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Schrodinger Picture of Quantum Gravitational Collapse

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arxiv 0711.0006 v2 pith:IVHBV3MG submitted 2007-10-31 gr-qc astro-phhep-th

classification gr-qcastro-phhep-th
keywords collapseequationgravitationalschrodingerblackeigenstatesholeoperator
verification ladder T0 review T1 audit T2 compute T3 formal
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The functional Schrodinger equation is used to study the quantum collapse of a gravitating, spherical domain wall and a massless scalar field coupled to the metric. The approach includes backreaction of pre-Hawking radiation on the gravitational collapse. Truncating the degrees of freedom to a minisuperspace leads to an integro-differential Schrodinger equation. We define a "black hole" operator and find its eigenstates. The black hole operator does not commute with the Hamiltonian, leading to an energy-black holeness uncertainty relation. We discuss energy eigenstates and also obtain a partial differential equation for the time-dependent gravitational collapse problem.

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