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- Black_hole_complementarity abstract "Black hole complementarity is a conjectured solution to the black hole information paradox, proposed by Leonard Susskind and Larus Thorlacius, and Gerard 't Hooft.Ever since Stephen Hawking suggested information is lost in an evaporating black hole once it passes through the event horizon and is inevitably destroyed at the singularity, and that this can turn pure quantum states into mixed states, some physicists have wondered if a complete theory of quantum gravity might be able to conserve information with a unitary time evolution. But how can this be possible if information cannot escape the event horizon without traveling faster than light? This seems to rule out Hawking radiation as the carrier of the missing information. It also appears as if information cannot be "reflected" at the event horizon as there is nothing special about it locally.Leonard Susskind proposed a radical resolution to this problem by claiming that the information is both reflected at the event horizon and passes through the event horizon and cannot escape, with the catch being no observer can confirm both stories simultaneously. According to an external observer, the infinite time dilation at the horizon itself makes it appear as if it takes an infinite amount of time to reach the horizon. He also postulated a stretched horizon, which is a membrane hovering about a Planck length outside the event horizon and which is both physical and hot. According to the external observer, infalling information heats up the stretched horizon, which then reradiates it as Hawking radiation, with the entire evolution being unitary. However, according to an infalling observer, nothing special happens at the event horizon itself, and both the observer and the information will hit the singularity. This isn't to say there are two copies of the information lying about — one at or just outside the horizon, and the other inside the black hole — as that would violate the no cloning theorem. Instead, an observer can only detect the information at the horizon itself, or inside, but never both simultaneously. Complementarity is a feature of the quantum mechanics of noncommuting observables, and Susskind proposed that both stories are complementary in the quantum sense.An infalling observer will see the point of entry of the information as being localized on the event horizon, while an external observer will notice the information being spread out uniformly over the entire stretched horizon before being re-radiated.To an infalling observer, information and entropy pass through the horizon with nothing strange happening. To an external observer, the information and entropy is absorbed into the stretched horizon which acts like a dissipative fluid with entropy, viscosity and electrical conductivity. See the membrane paradigm for more details. The stretched horizon is conducting with surface charges which rapidly spread out over the horizon.Global symmetries don't exist in quantum gravity. Baryon number is violated, but only at very small scales, and the proton has a very long lifetime. But with a short enough time resolution, the proton oscillates between different baryon numbers and the time warping near the horizon magnifies that. Alternatively, the hot temperatures of the stretched horizon cause the proton to decay. But an infalling observer never has time to see the proton decay.Recently, it appears that black hole complementarity combined with the monogamy of entanglement suggests the existence of a "firewall".".
- Black_hole_complementarity wikiPageID "30259292".
- Black_hole_complementarity wikiPageLength "5443".
- Black_hole_complementarity wikiPageOutDegree "25".
- Black_hole_complementarity wikiPageRevisionID "678453715".
- Black_hole_complementarity wikiPageWikiLink Black_hole.
- Black_hole_complementarity wikiPageWikiLink Black_hole_information_paradox.
- Black_hole_complementarity wikiPageWikiLink Category:Quantum_gravity.
- Black_hole_complementarity wikiPageWikiLink Entanglement.
- Black_hole_complementarity wikiPageWikiLink Entropy.
- Black_hole_complementarity wikiPageWikiLink Event_horizon.
- Black_hole_complementarity wikiPageWikiLink Firewall_(physics).
- Black_hole_complementarity wikiPageWikiLink Gerard_t_Hooft.
- Black_hole_complementarity wikiPageWikiLink Gravitational_singularity.
- Black_hole_complementarity wikiPageWikiLink Hawking_radiation.
- Black_hole_complementarity wikiPageWikiLink Leonard_Susskind.
- Black_hole_complementarity wikiPageWikiLink Membrane_paradigm.
- Black_hole_complementarity wikiPageWikiLink Mixed_state_(physics).
- Black_hole_complementarity wikiPageWikiLink No-cloning_theorem.
- Black_hole_complementarity wikiPageWikiLink No_cloning_theorem.
- Black_hole_complementarity wikiPageWikiLink Planck_length.
- Black_hole_complementarity wikiPageWikiLink Pure_state.
- Black_hole_complementarity wikiPageWikiLink Quantum_gravity.
- Black_hole_complementarity wikiPageWikiLink Quantum_mechanics.
- Black_hole_complementarity wikiPageWikiLink Quantum_state.
- Black_hole_complementarity wikiPageWikiLink Stephen_Hawking.
- Black_hole_complementarity wikiPageWikiLink Time_evolution.
- Black_hole_complementarity wikiPageWikiLinkText "Black hole complementarity".
- Black_hole_complementarity wikiPageWikiLinkText "black hole complementarity".
- Black_hole_complementarity hasPhotoCollection Black_hole_complementarity.
- Black_hole_complementarity wikiPageUsesTemplate Template:Black_holes.
- Black_hole_complementarity wikiPageUsesTemplate Template:Citation_needed.
- Black_hole_complementarity wikiPageUsesTemplate Template:Quantum_gravity.
- Black_hole_complementarity wikiPageUsesTemplate Template:Why.
- Black_hole_complementarity subject Category:Quantum_gravity.
- Black_hole_complementarity hypernym Solution.
- Black_hole_complementarity type Article.
- Black_hole_complementarity type Software.
- Black_hole_complementarity type Article.
- Black_hole_complementarity type Astrophysic.
- Black_hole_complementarity type Object.
- Black_hole_complementarity comment "Black hole complementarity is a conjectured solution to the black hole information paradox, proposed by Leonard Susskind and Larus Thorlacius, and Gerard 't Hooft.Ever since Stephen Hawking suggested information is lost in an evaporating black hole once it passes through the event horizon and is inevitably destroyed at the singularity, and that this can turn pure quantum states into mixed states, some physicists have wondered if a complete theory of quantum gravity might be able to conserve information with a unitary time evolution. ".
- Black_hole_complementarity label "Black hole complementarity".
- Black_hole_complementarity sameAs Complémentarité_des_trous_noirs.
- Black_hole_complementarity sameAs Complementaridade_do_buraco_negro.
- Black_hole_complementarity sameAs m.0g58838.
- Black_hole_complementarity sameAs Комплементарность_чёрных_дыр.
- Black_hole_complementarity sameAs Kara_deliklerde_tamamlayıcılık_ilkesi.
- Black_hole_complementarity sameAs Q13582215.
- Black_hole_complementarity sameAs Q13582215.
- Black_hole_complementarity wasDerivedFrom Black_hole_complementarity?oldid=678453715.
- Black_hole_complementarity isPrimaryTopicOf Black_hole_complementarity.