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Oscillations for Equivalence Preservation and Information Retrieval from Young Black Holes

机译:从年轻黑洞进行等价保存和信息检索的振荡

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We follow the prevailing view that black holes do not destroy but rather process and release information in the form of Hawking radiation. By making certain conservative assumptions regarding the interior dynamics of the quantum system we suggest an outside observer could, in principle, recover the initial quantum state | ψ > before the black hole has evaporated half of its entropy. In the current framework the retention time is associated with the time scale for a local perturbation to become effectively undetectable (scrambling time). Also, we provide a scenario for storing the information about an infalling matter in the near-horizon region in a layered fashion. Later we present a generic phenomena which provides a set of boundary conditions for breaking the trans-horizon vacuum entanglement between in- and out-modes, and thus preserve the effective field theory after Page time O(R 3 ). The scenario follows from black hole perturbation theory. We further argue the proposed Planckian-amplitude horizon oscillations can account for the physical membrane which an observer at future null infinity L + measures in the complementarity conjecture. ?c Electronic Journal of Theoretical Physics. All rights reserved.
机译:我们遵循一种普遍的观点,即黑洞不会破坏而是反而是以霍金辐射的形式处理和释放信息。通过对量子系统的内部动力学做出某些保守的假设,我们建议外部观察者原则上可以恢复初始量子态。在黑洞蒸发掉一半熵之前。在当前框架中,保留时间与本地扰动的时间尺度相关,该扰动实际上变得不可检测(扰乱时间)。另外,我们提供了一种方案,用于以分层方式在近视区中存储有关下落物的信息。稍后,我们将介绍一种通用现象,该现象为打破入模和出模之间的跨视线真空缠结提供了一组边界条件,从而在Page time O(R 3)之后保留了有效的场论。该场景来自黑洞扰动理论。我们进一步认为,所提出的普朗克振幅振幅振荡可以解释物理膜,该膜在互补猜想中在未来的无穷大L +处所观测到。 ?c理论物理电子杂志。版权所有。

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