Study on Black Hole Information Paradox from the Viewpoint of the Discrete Time Hypothesis

Alexander M. Zaslavsky
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Abstract

Based on the discrete time hypothesis, the phenomenon of phase substitution of the wave function of a particle falling in a black hole is considered. The results speak for possibility of certain exotic forms of the wave function evolution, providing among other things, return of information when the particle is falling down to a static black hole. When substitution the phase of the wave function in the vicinity of the event horizon, information may return due to the local reversal of particle time. Based on the analysis of the flow of information returned, using the holographic principle, an estimate of the quantum of the particle’s proper time is obtained.
从离散时间假设的角度研究黑洞信息悖论
基于离散时间假设,考虑了粒子落入黑洞时波函数的相位替换现象。这些结果说明了波函数演化的某些奇特形式的可能性,其中包括粒子落向静态黑洞时的信息返回。当在视界附近替换波函数的相位时,由于粒子时间的局部反转,信息可能会返回。在分析返回信息流的基础上,利用全息原理对粒子固有时的量子量进行了估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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