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The Hawking effect is short-lived in polymer quantization

2 Pith papers cite this work. Polarity classification is still indexing.

2 Pith papers citing it
abstract

It is widely believed that the Hawking effect might hold clues to the possible, yet unknown, trans-Planckian physics. On the other hand, one could ask whether the effect itself might be altered by such trans-Planckian physics. We seek an answer to this question within a framework where matter field is quantized using polymer quantization, a canonical quantization technique employed in loop quantum gravity. We provide an exact derivation of the Hawking effect using canonical formulation by introducing a set of near-null coordinates which allows one to overcome the challenges posed by a Hamiltonian-based derivation of the Hawking effect. Subsequently, we show that in polymer quantization the Hawking effect is short-lived and it eventually disappears for an asymptotic future observer. Such an observer finds the duration of the Hawking effect to be few milliseconds for a solar mass black hole whereas it is few years for an ultra-massive black hole. Consequently, it provides a new way to resolve the so-called information loss paradox.

citation-role summary

background 2

citation-polarity summary

fields

hep-th 2

years

2026 1 2024 1

verdicts

UNVERDICTED 2

roles

background 2

polarities

background 1 support 1

representative citing papers

Exponentially Long Evaporation of Noncommutative Black Hole

hep-th · 2026-04-06 · unverdicted · novelty 5.0

Noncommutative spacetime shifts the collapsing shell proportionally to outgoing Hawking mode momentum, invalidating standard robustness arguments and causing radiation to decay exponentially after scrambling for exponentially long black hole evaporation.

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