The paper argues that binary black-hole merger waveforms damp only if black holes have extended inner structure that deforms like a banana during merger.
Information Missing Puzzle, Where Is Hawking's Error?
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abstract
Matters falling into and consisting of a blackhole can oscillate periodically across instead of accumulate statically on the central point and form singularities there. In quantum language, this oscillation not only resolves central singularities of the blackhole but also blurs its horizon remarkably. This blurring makes the horizon not a zero-thickness geometric surface any more, but an extended physic region whose thickness is comparable with the horizon radius itself. It is our negligence of this fact that leads to the information missing puzzle, and other related question in blackhole physics. Besides the title question and Schwarzschild singularity's resolving, the current work also provides interpretations for the origin of Bekenstein-Hawking entropy and an explicitly unitary formulation of Hawking radiations.
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Complementarity of Gravitation Collapse (II) XOB and the Damping Gravitational Waveform as Evidences
The paper argues that binary black-hole merger waveforms damp only if black holes have extended inner structure that deforms like a banana during merger.