Generalized uncertainty principle impact onto black holes information flux and the sparsity of Hawking radiation

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We investigate the generalized uncertainty principle (GUP) corrections to the entropy content and the information flux of black holes, as well as the corrections to the sparsity of the Hawking radiation at the late stages of evaporation. We find that due to these quantum gravity motivated corrections, the entropy flow per particle reduces its value on the approach to the Planck scale due to a better accuracy in counting the number of microstates. We also show that the radiation flow is no longer sparse when the mass of a black hole approaches Planck mass which is not the case for non-GUP calculations.

Tytuł
Generalized uncertainty principle impact onto black holes information flux and the sparsity of Hawking radiation
Twórca
Alonso-Serrano Ana
Słowa kluczowe
Hawking temperature; Bekenstein entropy; generalized uncertainty principle
Słowa kluczowe
temperatura Hawkinga; entropia Bekensteina; uogólniona zasada nieoznaczoności
Współtwórca
Dąbrowski Mariusz Przemysław ORCID 0000-0001-8722-9470
Gohar Hussain ORCID 0000-0002-6862-0869
Data
2018
Typ zasobu
artykuł
Identyfikator zasobu
DOI 10.1103/PhysRevD.97.044029
Źródło
Physical Review D : covering particles, fields, gravitation, and cosmology, 2018, vol. 97 iss. 4, [br. s.], 044029
Język
angielski
Prawa autorskie
CC BY CC BY
Kategorie
Publikacje pracowników US
Data udostępnienia2 lis 2021, 12:45:04
Data mod.14 mar 2023, 12:19:57
DostępPubliczny
Aktywnych wyświetleń0