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The Trilinear Hamiltonian: A Zero Dimensional Model of Hawking Radiation from a Quantized Source
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We investigate a quantum parametric amplifier with dynamical pump mode, viewed as a zero-dimensional model of Hawking radiation from an evaporating black hole. The conditions are derived under which the spectrum of particles generated from vacuum fluctuations deviates from the thermal spectrum predicted for the conventional parametric amplifier. We find that significant deviations arise when the pump mode (black hole) has emitted nearly half of its initial energy into the signal (Hawking radiation) and idler (in-falling particle) modes. As a model of black hole dynamics, this finding lends support to the view that late-time Hawking radiation contains information about the quantum state of the black hole and is entangled with the black hole's quantum gravitational degrees of freedom.
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Cited by 1 Pith paper
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Black Hole Waterfall: a unitary phenomenological model for black hole evaporation with Page curve
A unitary toy model in which cascading interior Hawking partners act as new pair sources produces a Page curve and complete energy transfer to radiation.
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