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Mirror Reflections of a Black Hole

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abstract

An exact correspondence between a black hole and an accelerating mirror is demonstrated. It is shown that for a massless minimally coupled scalar field the same Bogolubov coefficients connecting the "in" and "out" states occur for a (1+1)D flat spacetime with a particular perfectly reflecting accelerating boundary trajectory and a (1+1)D curved spacetime in which a null shell collapses to form a black hole. Generalization of the latter to the (3+1)D case is discussed. The spectral dynamics is computed in both (1+1)-dimensional spacetimes along with the energy flux in the spacetime with a mirror. It is shown that the approach to equilibrium is monotonic, asymmetric in terms of the rate, and there is a specific time which characterizes the system when it is the most out-of-equilibrium.

fields

gr-qc 1

years

2026 1

verdicts

UNVERDICTED 1

representative citing papers

Planckian Gravitons from an Imaginary-Time Clock

gr-qc · 2026-05-31 · unverdicted · novelty 5.0

Derives Planckian graviton spectrum ω³/(e^{2π c ω/κ}-1) from imaginary-time periodicity of a quadrupole source, yielding finite energy and number.

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  • Planckian Gravitons from an Imaginary-Time Clock gr-qc · 2026-05-31 · unverdicted · none · ref 48 · internal anchor

    Derives Planckian graviton spectrum ω³/(e^{2π c ω/κ}-1) from imaginary-time periodicity of a quadrupole source, yielding finite energy and number.