CWRU PAT Coffee Agenda

Tuesdays 10:30 - 11:30 | Fridays 11:30 - 12:30

+1 Black hole unitarity and antipodal entanglement.

kxp265 +1

+1 Vacuum degeneracy = Multiplicity of Vainshtein scales.

cad96 +1

+1 A 6% measurement of the Hubble parameter at $z\sim0.45$: direct evidence of the epoch of cosmic re-acceleration.

cjc5 +1 aam80 +1

0 Soft Hair on Black Holes.

bump   aam80 +2

0 Fluctuations in a Cosmology with a Space-Like Singularity and their Gauge Theory Dual Description.

bump   aam80 +2

Showing votes from 2016-01-12 11:30 to 2016-01-15 12:30 | Next meeting is Tuesday May 12th, 10:30 am.

users

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astro-ph.CO

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astro-ph.HE

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astro-ph.GA

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astro-ph.IM

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gr-qc

  • Black hole unitarity and antipodal entanglement.- [PDF] - [Article]

    Gerard t Hooft
     

    Hawking particles emitted by a black hole are usually found to have thermal spectra, if not exactly, then by a very good approximation. Here, we argue differently. Locally, Hawking particles are thermal, but globally not: the Hawking particles emerging from one hemisphere of a black hole are 100 % entangled with the Hawking particles emerging from the other hemisphere. Consequently, their thermal fluctuations are identical, so if a rare event takes place on one hemisphere, the same event will be seen at the antipodal point on the other hemisphere. We explain why such bizarre behaviour is demanded by the requirement that black hole evaporation is described by a unitary scattering matrix. Region I and the diametrically opposite region II of the Penrose diagram represent antipodal points in a CPT relation, as was suggested before. On the horizon itself, antipodal points are identified, as long as there is no matter falling in. A candidate instanton is proposed to describe the formation and evaporation of virtual black holes of the type described here.

hep-ph

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hep-th

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hep-ex

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quant-ph

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other

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