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[[File:Gersch_device_black_hole_BO3.jpg|thumb|right|The Gersh Device is capable of creating Black Holes|320px]]
 
{|class=width="100%" style="border:4px solid #856363; border-radius:7.5px; clear:both; font-size:75%; font-family:verdana;" align="center""
! colspan="2" style="background:#FF0000; border-radius:3.25px;" align="center"|''Important Codex Wiki Articles''
|-
|width="15%" "background:grey; border-radius:3.25px;"|'''Important Pages'''
|[[The Codex Wiki]] - [[Site FAQ]] - [[The Codex:About|General Help Page]]- [[Tiering System]] - [[Civilization Tiering System]] - [[Codex Profile Rules|Rules for Codex Profiles]] - [[Common Editing Mistakes]] - [[Disclaimer]] - [[How to Handle Calculations]] - [[Universe]] - [[Multiverse]] - [[Omniverse]] - [[Projectile and Objects Feats]] - [[Dimensional Tiering Explanation]] - [[Common Terminology]] - [[Discussion Rules]] - [[Reference for Common Feats]] - [[Rules for Acceptable Profiles]] - [[Rules for Fanon Profiles]] - [[Misleading Titles]] - [[Mistranslations]] - [[Outside Wiki Standards]] - [[Statements]] - [[Verse Cosmology Categorizations]] - [[Fictional Universes]]
|-
|width="15%" "background:grey; border-radius:3.25px;"|'''Terminology'''
|[[Alignment]] - [[Status]] - [[Protection Level]] - [[Threat Level]] - [[Cardinality]] - [[Grade]] - [[Dimensionality]] - [[Attack Potency]] - [[Durability]] - [[Speed]] - [[Reactions]] - [[Lifting Strength]] - [[Striking Strength]] - [[Range]] - [[Intelligence]] - [[Knowledge]] - [[Powers and Techniques]] - [[State of Being]] - [[Physiology]] - [[Equipment]] - [[No Limits Fallacy]] - [[Omnipotence]] - [[Cinematic Time]] - [[Canon]] - [[Canon|Crossover]] - [[How to Handle Canon]] - [[Multipliers]] - [[Environmental Destruction]] - [[Bloodlust]] - [[Overtime Feats]] - [[Chain Reactions]] -[[Outside Help]] - [[Space]] - [[The Kardashev Scale]] - [[Infinity]] - [[Power Source]] - [[Light Speed]] - [[Requirements for Speed of Light/Faster Than Light Speeds]]
|-
|"background:grey; border-radius:3.25px;"|'''Standards'''
|[[Transcendence]] - [[Creation vs Destruction]] - [[Outlier]] - [[Ludonarrative Dissonance]] - [[Inconsistency]] - [[Plot-Induced Stupidity]] - [[Reality - Fiction Interaction]] - [[Powerscaling]] - [[Black Hole]] - [[Wormhole]] - [[Stabilization Feats]] - [[Merging Feats]] - [[Embodying Feats]] - [[Data World Standards]] - [[Dream World Standards]] - [[Standard Battle Assumptions]] - [[One-Shot]] - [[Speed Blitz]] - [[Penetration Damage]] - [[Blunt Force Damage]] - [[Death of the Author]] - [[Versus Threads]] - [[Information Pages]] - [[Light Dodging Feats]] - [[Lightning Standards]] - [[Void Standards]]
|-
|"background:grey; border-radius:3.25px;"|'''Formats'''
|[[Standard Format for Character Profiles]] - [[Standard Format for Factions]] - [[Standard Format for Cosmic Forces]] - [[Standard Format for Events]] - [[Standard Format for Verse Pages]] - [[Standard Format for Locations Profiles]] - [[Standard Format for Weapon Profiles]] - [[Standard Format for Powers and Abilities]] - [[Standard Format for Civilization Profiles]] - [[Standard Format for Category Names]] - [[Standard Templates For Tabbers]]
|-
|"background:grey; border-radius:3.25px;"|'''Fanon'''
|[[Fanon]] - [[Fanon/Community-Strongest-Character-Tier-List|Strongest Character Tier List]] - [[Fanon/Community-Weakest-Character-Tier-List|Weakest Character Tier List]] - [[Fanon/Strongest Smash Characters Tier List]]
|}
[[File:BH.png|center|600px]]
==Background==
==Background==
'''Black Hole Creation''' is a subset of [[Gravity Manipulation]] that allows the user to generate black holes, regions of space-time with gravity so intense that even light cannot escape them. True black holes are virtually inescapable unless one can move faster-than-light and [[Durability Negation|ignore conventional durability]] because the incredible tidal forces within the black hole approach infinity in all directions, making it virtually impossible to survive through normal means unless the target is an entire dimensional tier above the user.
'''Black Holes''' are a place in space where gravity pulls so much that even light can not get out. The gravity is so strong because matter has been squeezed into a tiny space. This can happen when a star is dying.
 
Because no light can get out, people can't see black holes. They are invisible. Space telescopes with special tools can help find black holes. The special tools can see how stars that are very close to black holes act differently than other stars.
 
Black holes can be big or small. Scientists think the smallest black holes are as small as just one atom. These black holes are very tiny but have the mass of a large mountain. Mass is the amount of matter, or "stuff," in an object.
 
Another kind of black hole is called "stellar." Its mass can be up to 20 times more than the mass of the sun. There may be many, many stellar mass black holes in Earth's galaxy. Earth's galaxy is called the Milky Way.
 
The largest black holes are called "supermassive." These black holes have masses that are more than 1 million suns together. Scientists have found proof that every large galaxy contains a supermassive black hole at its center. The supermassive black hole at the center of the Milky Way galaxy is called Sagittarius A. It has a mass equal to about 4 million suns and would fit inside a very large ball that could hold a few million Earths.
 
Scientists think the smallest black holes formed when the universe began.


It should be noted that characters who have survived black holes but can otherwise be harmed by other, conventional attacks will not be given infinite durability. They will instead be stated to simply have a resistance to black holes.
Stellar black holes are made when the center of a very big star falls in upon itself, or collapses. When this happens, it causes a supernova. A supernova is an exploding star that blasts part of the star into space.


It should also be noted that, even if the projectile resembles a black hole and shares the same basic function, it does not automatically qualify to be a real black hole. For further information, please refer to the section below.
Scientists think supermassive black holes were made at the same time as the galaxy they are in.


==Black Hole Feats in Fiction==
A black hole can not be seen because strong gravity pulls all of the light into the middle of the black hole. But scientists can see how the strong gravity affects the stars and gas around the black hole. Scientists can study stars to find out if they are flying around, or orbiting, a black hole.


=== Proving the Legitimacy of Black Holes ===
When a black hole and a star are close together, high-energy light is made. This kind of light can not be seen with human eyes. Scientists use satellites and telescopes in space to see the high-energy light.
Often in fiction, characters will come across something they claim to be a black hole. While it may resemble one, not all verses properly treat black holes as they should. In order to ensure that something is a legitimate black hole, it should meet some of the following requirements to determine such:


* The [[Statements|statement]] comes from a reliable source.
==General Information==
* It should have a referenced singularity in its center.
* Light should be bent outside of just the event horizon.
* Its gravitational pull should be proportionally realistic to the black hole.
* Aspects such as spaghettification should be referenced when describing the crossovers.
* It would help to come from a source such as a dying star, something a black hole originates from.


===Attack Potency for Creating Black Holes===
'''Name:''' [https://www.amnh.org/learn-teach/curriculum-collections/cosmic-horizons-book/john-michell-black-holes#:~:text=The%20term%20“black%20hole“%20was,the%20collapse%20of%20massive%20stars. Black Hole]
Black holes have many special and amazing properties, but aside from the parts that can not be quantified in a number, which Attack Potency would one get for creating a black hole?


In general creating a black hole is about equal to creating any other celestial bodies. Usually creating a planet is seen as planet level and creating a star is seen as star level etc.
'''Origin:''' Real World


So how do black holes rank? The answer lies in their mass. Usually stellar black holes have masses ranging from about 5 to several tens of solar masses and can easily be assumed to be at least star level, if not large star level. But some characters also have the ability to create very small black holes and some black holes in fiction may even be extremely large. So how do we rank them?
'''Appearance:'''
*[https://www.nasa.gov/universe/what-are-black-holes/#:~:text=Two%20main%20classes%20of%20black,most%20big%20galaxies%2C%20ours%20included. Normally through the death of a massive star]
*[https://youtu.be/NWBkZ3bMSV0 Sound of a black hole].


The good thing is that there is an easy formula that lets us approximate the mass of black holes based on the radius of the event horizon. It is:
'''Classification:''' Result of Stellar Death (For stellar black holes)


[[File:Black_Hole_Formula.png]]
'''Result:''' Unknown (It has been impossible with current methods to be able to look within a black hole)


where:
==Codex Statistics==
'''[[Tiering System]]:''' '''Varies''', '''5-B''' with standard luminosity, '''Low 4-C''' with TON 618's luminosity. '''4-B''' through Black Hole Collision Event


:''r''<sub>s</sub> is the Schwarzschild radius (radius of the event horizon);
'''[[Attack Potency]]:''' '''Varies''' (Black Holes can theoretically be born from things far lesser then Stellar Explosions, [https://www.pbs.org/wgbh/nova/blackhole/tiny.html#:~:text=Black%20holes%20are,cannot%20form%20today.) with their being even "tiny" black holes potentially existing]), '''Planet level''' ([https://homepage.physics.uiowa.edu/~pkaaret/s09/L21_imbh.pdf Standard Black Holes have at least a solar luminosity of 750,000], [[Reference_for_Common_Feats#Black_Hole_Luminosity_Feats|which should put it at these levels]]), '''Small Star level''' with TON 618's luminosity ([https://en.wikipedia.org/wiki/TON_618#:~:text=With%20an%20absolute%20magnitude%20of,objects%20in%20the%20known%20Universe. TON 618 carries a luminosity of 4 * 10^40 Watts (4e40 J/s)]). '''Solar System level''' through Black Hole Collission Event ([https://www.snexplores.org/article/black-hole-smashup-sent-out-yottawatts-power Events such as these release over 32 septillion yottawatts of energy or 3.2 x 10^49 joules])
:G is the [[wikipedia:Gravitational constant|gravitational constant]];
:M is the [[wikipedia:Mass|mass]] of the object;
:c is the [[wikipedia:Speed of light|speed of light]] in vacuum.


(From Wikipedia)
'''[[Durability]]:''' '''Varies''', '''Solar System level''' for the lightest known Black Hole ([https://science.nasa.gov/universe/black-holes/ The lightest known black hole is 3.8 times the Sun's mass]<ref>04<br>Smallest.<br>The lightest-known black hole is only 3.8 times the Sun’s mass. It’s paired up with a star.</ref>, [[Reference_for_Common_Feats#GBE_of_a_Black_Hole|giving it this gravitational binding energy]]), '''Multi-Solar System level''' with Ton 618 ([https://science.nasa.gov/universe/black-holes/ The most massive black hole has 66 billion times the Sun’s mass], [[Reference_for_Common_Feats#GBE_of_a_Black_Hole|giving it this gravitational binding energy]])


So if we know the size we can just set in all values and can easily solve to M.
'''[[Speed|Attack Speed]]:''' '''Varies''', '''Massively Hypersonic+''' with Supermasive Black Holes ([https://arstechnica.com/science/2015/09/supermassive-black-holes-found-spiraling-in-at-seven-percent-light-speed/ Supermassive black holes spiral at seven percent the speed of light]), '''Relativsitic+''' with Launching Particles ([https://science.nasa.gov/universe/black-holes/ Black Holes at the centers of galaxies can launch particles to near light speed]<ref>07<br>Particle accelerators.<br>Monster black holes at the centers of galaxies can launch particles to near light speed.</ref>)


To roughly estimate the [[Attack Potency]] level one can then compare its mass to either that of the earth or the sun, whichever is closer to its mass. If it's x times the mass of the object it is compared to we estimate that it's creation would equal about x times the energy needed to destroy said object, i.e. either x-times baseline planet level for earth or x-times baseline star level for the sun.
'''[[Range]]:''' '''Varies''', '''Stellar''' with Stellar Black Holes, '''Universal''' through Black Hole Collission Event ([https://news.uchicago.edu/story/black-hole-collisions-could-help-us-measure-how-fast-universe-expanding#:~:text=Occasionally%2C%20two%20black%20holes%20will,that%20travels%20across%20the%20universe. Two black holes colliding creates a literal ripple in space-time that travels across the universe])
----
==[[Powers and Techniques]]==
'''[[Space-Time Manipulation]]''' ([https://blackholecam.org/black-holes-distort-space-time/#:~:text=According%20to%20Einstein's%20General%20Theory,preventing%20even%20light%20to%20escape. According to Einstein’s General Theory of Relativity, any massive object distorts the space-time around it, including our Sun, Earth, or even us. A black hole is an extreme case in the sense that at its singularity the curvature of space-time becomes infinite, preventing even light from escaping. The boundary beyond which light cannot escape the black hole’s gravity well is known as the event horizon, while its radius is called the Schwarzschild radius. Once particles and light rays go past the event horizon their light cones “tip over” and point to the singularity, which now represents all future-directed paths with no escape possible]. [https://news.uchicago.edu/story/black-hole-collisions-could-help-us-measure-how-fast-universe-expanding#:~:text=Occasionally%2C%20two%20black%20holes%20will,that%20travels%20across%20the%20universe. Two black holes colliding creates a literal ripple in space-time that travels across the universe]), '''[[Information Manipulation]]''' ([https://www.symmetrymagazine.org/article/has-the-black-hole-information-paradox-evaporated In the 1970s, scientists’ calculations suggested that this light contained almost no information. Black holes seemed to be destroyers not just of the objects that sank into them but also of any information about what those objects had been in the first place]), '''[[Absorption]]''' ([https://physics.aps.org/story/v10/st27#:~:text=Black%20holes%20are%20easiest%20to,including%20light%20and%20gravitational%20waves.&text=In%20other%20words%2C%20black%20holes%20grow. Black holes absorb matter–such as stars and gas–and radiation, including light and gravitational waves]), '''[[Gravity Manipulation]]''' ([https://www.nasa.gov/audience/forstudents/k-4/stories/nasa-knows/what-is-a-black-hole-k4.html A black hole is a place in space where gravity pulls so much that even light can not get out. The gravity is so strong because matter has been squeezed into a tiny space]), '''[[Physics Manipulation]]''' ([https://scitechdaily.com/startling-research-shows-how-physics-breaks-down-in-a-black-hole/ Black Holes are noted as a place where physics break down] [https://physics.aps.org/story/v10/st27#:~:text=Black%20holes%20are%20easiest%20to,including%20light%20and%20gravitational%20waves.&text=In%20other%20words%2C%20black%20holes%20grow. with a current unsolvable paradox coming from black holes that is considered impossible under quantum physics]), '''[[Matter Manipulation]]:''' ([https://physics.aps.org/story/v10/st27#:~:text=Black%20holes%20are%20easiest%20to,including%20light%20and%20gravitational%20waves.&text=In%20other%20words%2C%20black%20holes%20grow. Black holes absorb matter–such as stars and gas–and radiation, including light and gravitational waves]), '''[[Durability Negation]]''' (Black Holes methods of breaking down objects is absorbing their matter and information and breaking them down), '''[[Erasure]]''' ('''Information Erasure;''' Through the process of breaking down objects black holes have essentially erased one's information which by extension would be its existence)


A more comfortable way may be calculators for the mass and size of a black hole such as [http://hyperphysics.phy-astr.gsu.edu/hbase/astro/blkhol.html this] one or [https://www.vttoth.com/CMS/physics-notes/311-hawking-radiation-calculator this] one.
==Notes==
===Black Hole Feats in Fiction===
==== Proving the Legitimacy of Black Holes ====
Often in fiction, characters will come across something they claim to be a black hole or see someone that [[Black Hole Manipulation|creates or manipulates black holes]]. While it may resemble one, not all verses properly treat black holes as they should. To ensure that something is a legitimate black hole, it should meet some of the following requirements to determine such:


'''Note:''' Destroying a black hole is generally unquantifiable because of the unknowns of how you'd properly destroy one and the kind of energy actually needed for it. However, if there is an assigned output value for the black hole's power, you can scale the character off the AP of the black hole. The calculation process above details how we treat creating black holes.
* The [[Statements|statement]] comes from a reliable source.
* It should have a referenced singularity in its center.
* Light should be bent outside of just the event horizon.
* Its gravitational pull should be proportionally realistic to the black hole.
* Aspects such as spaghettification should be referenced when describing the crossovers.
* It would help to come from a source such as a dying star, something a black hole originates from.


===Regarding Durability From Black Hole Feats===
===Regarding Durability From Black Hole Feats===
Line 52: Line 85:
''[https://openstax.org/books/astronomy/pages/24-5-black-holes "For the astronaut, there is no turning back. Once inside the event horizon, the astronaut, along with any signals from his radio transmitter, will remain hidden forever from the universe outside. He will, however, not have a long time (from his perspective) to feel sorry for himself as he approaches the black hole. Suppose he is falling feet first. The force of gravity that the singularity exerts on his feet is greater than on his head, so he will be stretched slightly. Because the singularity is a point, the left side of his body will be pulled slightly toward the right, and the right slightly toward the left, bringing each side closer to the singularity. The astronaut will therefore be slightly squeezed in one direction and stretched in the other. Some scientists like to call this process of stretching and narrowing spaghettification. The point at which the astronaut becomes so stretched that he perishes depends on the size of the black hole. For black holes with masses billions of times the mass of the Sun, such as those found at the centers of galaxies, the spaghettification becomes significant only after the astronaut passes through the event horizon. For black holes with masses of a few solar masses, the astronaut will be stretched and ripped apart even before he reaches the event horizon."] - OpenStax''
''[https://openstax.org/books/astronomy/pages/24-5-black-holes "For the astronaut, there is no turning back. Once inside the event horizon, the astronaut, along with any signals from his radio transmitter, will remain hidden forever from the universe outside. He will, however, not have a long time (from his perspective) to feel sorry for himself as he approaches the black hole. Suppose he is falling feet first. The force of gravity that the singularity exerts on his feet is greater than on his head, so he will be stretched slightly. Because the singularity is a point, the left side of his body will be pulled slightly toward the right, and the right slightly toward the left, bringing each side closer to the singularity. The astronaut will therefore be slightly squeezed in one direction and stretched in the other. Some scientists like to call this process of stretching and narrowing spaghettification. The point at which the astronaut becomes so stretched that he perishes depends on the size of the black hole. For black holes with masses billions of times the mass of the Sun, such as those found at the centers of galaxies, the spaghettification becomes significant only after the astronaut passes through the event horizon. For black holes with masses of a few solar masses, the astronaut will be stretched and ripped apart even before he reaches the event horizon."] - OpenStax''


=== Escaping A Black Hole ===
==== Escaping A Black Hole ====
While surviving a black hole isn't exactly quantifiable, escaping it can be a decent feat. Firstly, black holes pull in many things due to their intense gravitational poll, even light itself. In order to escape a black hole, you would need to at least be moving at '''faster than light''' speeds.
The normal idea behind black holes is that one needs to be faster than light to escape them as even light itself can't escape them, though contextually there is a reason behind why light can't escape that comes from [https://public.nrao.edu/ask/why-cant-light-escape-a-black-hole/ here]:
{{Quote|Question:
Is the reason light cannot escape a black hole more due to the relative stop in time within the EH rather than the gravity slowing down the speed of light? The light could still be traveling at c but since v is a function of t, the relative t elapsed to an observer is always zero.


''[https://www.scientificamerican.com/article/escape-from-a-black-hole/ "The challenge here is that this scenario would conflict with a foundational concept of present-day physics, the principle of locality, which states that information cannot move from one place to another superluminally—that is, faster than the speed of light. But according to our definition of black holes, the only way to escape one is to travel faster than light, so if information does escape, it must be doing so superluminally, in conflict with locality."] - Scientific American''
Answer:
Within the event horizon of a black hole '''space is curved to the point where all paths that light might take to exit the event horizon point back inside the event horizon'''. This is the reason why light cannot escape a black hole.  Another way to look at it is that the escape velocity from the event horizon of a black hole is faster than the speed of light. Since nothing can travel faster than the speed of light, nothing escapes the event horizon of a black hole.|''Why Can’t Light Escape a Black Hole? -- Cardin, May 24, 2021''}}


Additionally, this would require you to have the [[Lifting Strength]] to overcome its gravitational force in order to escape. Therefore, escaping a black hole also doubles as a Lifting Strength feat that varies depending on the scale of the black hole.
The idea of requiring faster-than-light speed is more that one needs a way to escape said curved space, which normally is impossible in real life without moving at '''Faster Than Light''' speeds, though in fiction where some characters resist [[Space-Time Manipulation]] innately and can move in warped/distorted space-time areas, they would be able to escape a black hole even with curved space. Thus '''Faster Than Light''' for black holes would only work if the verse directly notes one is moving faster than light to escape it. Another thing is a black hole's gravitational pull is this strong, and a gravitation pull is not necessarily speed.
 
However, this would require one to have the [[Lifting Strength]] to overcome its gravitational force to escape if one is not resisting it.


=== Unquantifiable Aspects of Black Holes ===
=== Unquantifiable Aspects of Black Holes ===
There appears to be confusion on what parts of a black hole can be used for statistics and indexing. In order to clear up confusion, the following aren't feats that should be used for anything notable:
There appears to be confusion on what parts of a black hole can be used for statistics and indexing. In order to clear up confusion, the following aren't feats that should be used for anything notable:


* '''Grabbing/Moving a Black Hole:''' This is very simply impossible given how black holes work. The event horizon of a black hole is intangible, so you cannot interact with it conventionally. While you could hypothetically grab the singularity, the bizarre nature and sheer impossibility of such means it wouldn't give anything. At most, this would give [[Non-Physical Interaction]].
** Throwing objects into the black hole to move it is also too bizarre of a feat to really know how it would apply over to Lifting Strength. While moving a black hole might be possible, the method you would actually do so is very unknown. The two listed methods here most definitely wouldn't count toward that idea.
* '''Surviving a Black Hole:''' The section above already covers this, but this is re-emphasizing for the matter of importance on a topic.
* '''Surviving a Black Hole:''' The section above already covers this, but this is re-emphasizing for the matter of importance on a topic.
* '''Anything regarding faster than light Black Holes:''' If a black hole were to be faster than light, that would break the current understanding and logic of how black holes are supposed to even work. We can conclude that such wouldn't be a proper black hole, so it wouldn't be viable for any feats, even the aforementioned methods of calculating Attack Potency, Speed, and Lifting Strength.
* '''Anything regarding faster than light Black Holes:''' If a black hole were to be faster than light, that would break the current understanding and logic of how black holes are supposed to even work. We can conclude that such wouldn't be a proper black hole, so it wouldn't be viable for any feats, even the aforementioned methods of calculating Attack Potency, Speed, and Lifting Strength.
* '''Surviving the collapse of a black hole from Hawking Radiation:''' Things in a black hole's grasp are hit by the [http://cds.cern.ch/record/325404/files/9705007.pdf negative energy] of other objects rather than the actual energy when they are in the event horizon. While the character could withstand negative energy for a resistance feat, it would be unquantifiable to use for a durability feat period.
* '''Surviving the collapse of a black hole from Hawking Radiation:''' Things in a black hole's grasp are hit by the [http://cds.cern.ch/record/325404/files/9705007.pdf negative energy] of other objects rather than the actual energy when they are in the event horizon. While the character could withstand negative energy for a resistance feat, it would be unquantifiable to use for a durability feat period.


==Users==
==References==
 
{{scroll box|content={{reflist|2}}}}
*[[Mega Man (Classic)|Mega Man]] ([[Mega Man (Franchise)|Mega Man]])
*[[Sweet Tooth]] (Twisted Metal)
*[[The Gungeoneer]] (Enter The Gungeon)
*[[SCP-001 (Ouroboros/djkaktus's Proposal II)]] ([[SCP Foundation]])
*[[Worm (Worms)]]
*[[Caliborn]] (Homestuck)


[[Category:Powers and Abilities]]
{{Discussions}}
[[Category:Important]]
[[Category:Important]]
[[Category:Events]]
[[Category:Black Holes]]
[[Category:The Real World]]
[[Category:Variable Tier]]
[[Category:Tier 5]]
[[Category:5-B]]
[[Category:Tier 4]]
[[Category:Low 4-C]]
[[Category:4-B]]
[[Category:Space-Time Users]]
[[Category:Information Users]]
[[Category:Absorption Users]]
[[Category:Gravity Users]]
[[Category:Physics Users]]
[[Category:Matter Users]]
[[Category:Durability Negation Users]]
[[Category:Erasure Users]]

Latest revision as of 17:02, 11 October 2024

Important Codex Wiki Articles
Important Pages The Codex Wiki - Site FAQ - General Help Page- Tiering System - Civilization Tiering System - Rules for Codex Profiles - Common Editing Mistakes - Disclaimer - How to Handle Calculations - Universe - Multiverse - Omniverse - Projectile and Objects Feats - Dimensional Tiering Explanation - Common Terminology - Discussion Rules - Reference for Common Feats - Rules for Acceptable Profiles - Rules for Fanon Profiles - Misleading Titles - Mistranslations - Outside Wiki Standards - Statements - Verse Cosmology Categorizations - Fictional Universes
Terminology Alignment - Status - Protection Level - Threat Level - Cardinality - Grade - Dimensionality - Attack Potency - Durability - Speed - Reactions - Lifting Strength - Striking Strength - Range - Intelligence - Knowledge - Powers and Techniques - State of Being - Physiology - Equipment - No Limits Fallacy - Omnipotence - Cinematic Time - Canon - Crossover - How to Handle Canon - Multipliers - Environmental Destruction - Bloodlust - Overtime Feats - Chain Reactions -Outside Help - Space - The Kardashev Scale - Infinity - Power Source - Light Speed - Requirements for Speed of Light/Faster Than Light Speeds
Standards Transcendence - Creation vs Destruction - Outlier - Ludonarrative Dissonance - Inconsistency - Plot-Induced Stupidity - Reality - Fiction Interaction - Powerscaling - Black Hole - Wormhole - Stabilization Feats - Merging Feats - Embodying Feats - Data World Standards - Dream World Standards - Standard Battle Assumptions - One-Shot - Speed Blitz - Penetration Damage - Blunt Force Damage - Death of the Author - Versus Threads - Information Pages - Light Dodging Feats - Lightning Standards - Void Standards
Formats Standard Format for Character Profiles - Standard Format for Factions - Standard Format for Cosmic Forces - Standard Format for Events - Standard Format for Verse Pages - Standard Format for Locations Profiles - Standard Format for Weapon Profiles - Standard Format for Powers and Abilities - Standard Format for Civilization Profiles - Standard Format for Category Names - Standard Templates For Tabbers
Fanon Fanon - Strongest Character Tier List - Weakest Character Tier List - Fanon/Strongest Smash Characters Tier List

Background

Black Holes are a place in space where gravity pulls so much that even light can not get out. The gravity is so strong because matter has been squeezed into a tiny space. This can happen when a star is dying.

Because no light can get out, people can't see black holes. They are invisible. Space telescopes with special tools can help find black holes. The special tools can see how stars that are very close to black holes act differently than other stars.

Black holes can be big or small. Scientists think the smallest black holes are as small as just one atom. These black holes are very tiny but have the mass of a large mountain. Mass is the amount of matter, or "stuff," in an object.

Another kind of black hole is called "stellar." Its mass can be up to 20 times more than the mass of the sun. There may be many, many stellar mass black holes in Earth's galaxy. Earth's galaxy is called the Milky Way.

The largest black holes are called "supermassive." These black holes have masses that are more than 1 million suns together. Scientists have found proof that every large galaxy contains a supermassive black hole at its center. The supermassive black hole at the center of the Milky Way galaxy is called Sagittarius A. It has a mass equal to about 4 million suns and would fit inside a very large ball that could hold a few million Earths.

Scientists think the smallest black holes formed when the universe began.

Stellar black holes are made when the center of a very big star falls in upon itself, or collapses. When this happens, it causes a supernova. A supernova is an exploding star that blasts part of the star into space.

Scientists think supermassive black holes were made at the same time as the galaxy they are in.

A black hole can not be seen because strong gravity pulls all of the light into the middle of the black hole. But scientists can see how the strong gravity affects the stars and gas around the black hole. Scientists can study stars to find out if they are flying around, or orbiting, a black hole.

When a black hole and a star are close together, high-energy light is made. This kind of light can not be seen with human eyes. Scientists use satellites and telescopes in space to see the high-energy light.

General Information

Name: Black Hole

Origin: Real World

Appearance:

Classification: Result of Stellar Death (For stellar black holes)

Result: Unknown (It has been impossible with current methods to be able to look within a black hole)

Codex Statistics

Tiering System: Varies, 5-B with standard luminosity, Low 4-C with TON 618's luminosity. 4-B through Black Hole Collision Event

Attack Potency: Varies (Black Holes can theoretically be born from things far lesser then Stellar Explosions, with their being even "tiny" black holes potentially existing), Planet level (Standard Black Holes have at least a solar luminosity of 750,000, which should put it at these levels), Small Star level with TON 618's luminosity (TON 618 carries a luminosity of 4 * 10^40 Watts (4e40 J/s)). Solar System level through Black Hole Collission Event (Events such as these release over 32 septillion yottawatts of energy or 3.2 x 10^49 joules)

Durability: Varies, Solar System level for the lightest known Black Hole (The lightest known black hole is 3.8 times the Sun's mass[1], giving it this gravitational binding energy), Multi-Solar System level with Ton 618 (The most massive black hole has 66 billion times the Sun’s mass, giving it this gravitational binding energy)

Attack Speed: Varies, Massively Hypersonic+ with Supermasive Black Holes (Supermassive black holes spiral at seven percent the speed of light), Relativsitic+ with Launching Particles (Black Holes at the centers of galaxies can launch particles to near light speed[2])

Range: Varies, Stellar with Stellar Black Holes, Universal through Black Hole Collission Event (Two black holes colliding creates a literal ripple in space-time that travels across the universe)


Powers and Techniques

Space-Time Manipulation (According to Einstein’s General Theory of Relativity, any massive object distorts the space-time around it, including our Sun, Earth, or even us. A black hole is an extreme case in the sense that at its singularity the curvature of space-time becomes infinite, preventing even light from escaping. The boundary beyond which light cannot escape the black hole’s gravity well is known as the event horizon, while its radius is called the Schwarzschild radius. Once particles and light rays go past the event horizon their light cones “tip over” and point to the singularity, which now represents all future-directed paths with no escape possible. Two black holes colliding creates a literal ripple in space-time that travels across the universe), Information Manipulation (In the 1970s, scientists’ calculations suggested that this light contained almost no information. Black holes seemed to be destroyers not just of the objects that sank into them but also of any information about what those objects had been in the first place), Absorption (Black holes absorb matter–such as stars and gas–and radiation, including light and gravitational waves), Gravity Manipulation (A black hole is a place in space where gravity pulls so much that even light can not get out. The gravity is so strong because matter has been squeezed into a tiny space), Physics Manipulation (Black Holes are noted as a place where physics break down with a current unsolvable paradox coming from black holes that is considered impossible under quantum physics), Matter Manipulation: (Black holes absorb matter–such as stars and gas–and radiation, including light and gravitational waves), Durability Negation (Black Holes methods of breaking down objects is absorbing their matter and information and breaking them down), Erasure (Information Erasure; Through the process of breaking down objects black holes have essentially erased one's information which by extension would be its existence)

Notes

Black Hole Feats in Fiction

Proving the Legitimacy of Black Holes

Often in fiction, characters will come across something they claim to be a black hole or see someone that creates or manipulates black holes. While it may resemble one, not all verses properly treat black holes as they should. To ensure that something is a legitimate black hole, it should meet some of the following requirements to determine such:

  • The statement comes from a reliable source.
  • It should have a referenced singularity in its center.
  • Light should be bent outside of just the event horizon.
  • Its gravitational pull should be proportionally realistic to the black hole.
  • Aspects such as spaghettification should be referenced when describing the crossovers.
  • It would help to come from a source such as a dying star, something a black hole originates from.

Regarding Durability From Black Hole Feats

Black holes are generally treated as Durability Negation rather than giving outright durability to anyone. The reason is because of how spaghettification works. As you get closer to a black hole, the gravity intensifies and begins to disproportionately affect your body. The stronger tidal waves begin to distort your body the closer that you get to a singularity. For a further explanation, please read the quote below.

"For the astronaut, there is no turning back. Once inside the event horizon, the astronaut, along with any signals from his radio transmitter, will remain hidden forever from the universe outside. He will, however, not have a long time (from his perspective) to feel sorry for himself as he approaches the black hole. Suppose he is falling feet first. The force of gravity that the singularity exerts on his feet is greater than on his head, so he will be stretched slightly. Because the singularity is a point, the left side of his body will be pulled slightly toward the right, and the right slightly toward the left, bringing each side closer to the singularity. The astronaut will therefore be slightly squeezed in one direction and stretched in the other. Some scientists like to call this process of stretching and narrowing spaghettification. The point at which the astronaut becomes so stretched that he perishes depends on the size of the black hole. For black holes with masses billions of times the mass of the Sun, such as those found at the centers of galaxies, the spaghettification becomes significant only after the astronaut passes through the event horizon. For black holes with masses of a few solar masses, the astronaut will be stretched and ripped apart even before he reaches the event horizon." - OpenStax

Escaping A Black Hole

The normal idea behind black holes is that one needs to be faster than light to escape them as even light itself can't escape them, though contextually there is a reason behind why light can't escape that comes from here:

Question:

Is the reason light cannot escape a black hole more due to the relative stop in time within the EH rather than the gravity slowing down the speed of light? The light could still be traveling at c but since v is a function of t, the relative t elapsed to an observer is always zero.

Answer: Within the event horizon of a black hole space is curved to the point where all paths that light might take to exit the event horizon point back inside the event horizon. This is the reason why light cannot escape a black hole. Another way to look at it is that the escape velocity from the event horizon of a black hole is faster than the speed of light. Since nothing can travel faster than the speed of light, nothing escapes the event horizon of a black hole.

~ Why Can’t Light Escape a Black Hole? -- Cardin, May 24, 2021

The idea of requiring faster-than-light speed is more that one needs a way to escape said curved space, which normally is impossible in real life without moving at Faster Than Light speeds, though in fiction where some characters resist Space-Time Manipulation innately and can move in warped/distorted space-time areas, they would be able to escape a black hole even with curved space. Thus Faster Than Light for black holes would only work if the verse directly notes one is moving faster than light to escape it. Another thing is a black hole's gravitational pull is this strong, and a gravitation pull is not necessarily speed.

However, this would require one to have the Lifting Strength to overcome its gravitational force to escape if one is not resisting it.

Unquantifiable Aspects of Black Holes

There appears to be confusion on what parts of a black hole can be used for statistics and indexing. In order to clear up confusion, the following aren't feats that should be used for anything notable:

  • Surviving a Black Hole: The section above already covers this, but this is re-emphasizing for the matter of importance on a topic.
  • Anything regarding faster than light Black Holes: If a black hole were to be faster than light, that would break the current understanding and logic of how black holes are supposed to even work. We can conclude that such wouldn't be a proper black hole, so it wouldn't be viable for any feats, even the aforementioned methods of calculating Attack Potency, Speed, and Lifting Strength.
  • Surviving the collapse of a black hole from Hawking Radiation: Things in a black hole's grasp are hit by the negative energy of other objects rather than the actual energy when they are in the event horizon. While the character could withstand negative energy for a resistance feat, it would be unquantifiable to use for a durability feat period.

References

  1. 04
    Smallest.
    The lightest-known black hole is only 3.8 times the Sun’s mass. It’s paired up with a star.
  2. 07
    Particle accelerators.
    Monster black holes at the centers of galaxies can launch particles to near light speed.