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String-theoretic breakdown of effective field theory near black hole horizons

机译:黑洞视野附近有效现场理论的字符串理论分解

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We investigate the validity of the equivalence principle near horizons in string theory, analyzing the breakdown of effective field theory caused by longitudinal string spreading effects. An experiment is set up where a detector is thrown into a black hole a long time after an early infalling string. Light cone gauge calculations, taken at face value, indicate a detectable level of root-mean-square longitudinal spreading of the initial string as measured by the late infaller. This results from the large relative boost between the string and detector in the near-horizon region, which develops automatically despite their modest initial energies outside the black hole and the weak curvature in the geometry.We subject this scenario to basic consistency checks, using these to obtain a relatively conservative criterion for its detectability. In a companion paper, we exhibit longitudinal nonlocality in well-defined gauge-invariant S-matrix calculations, obtaining results consistent with the predicted spreading albeit not in a direct analog of the black hole process. We discuss applications of this effect to the firewall paradox, and estimate the time and distance scales it predicts for new physics near black hole and cosmological horizons.
机译:我们调查的近弦理论视野等效原理的有效性,分析有效场论引起的纵向绳扩散效应的击穿。实验设置其中检测器是一个早期下落的字符串后扔到黑洞很长时间。光锥规范的计算,按面值截取,表明根均方纵向由infaller晚期测定初始串的扩展可检测水平。此结果从近水平面区域的字符串和检测器之间的大的相对升压,其尽管在geometry.We受试者黑洞和弱曲率以外的适度的初始能量自动开发这种情况下,以基本一致性检查,使用这些从而获得了其探测相对保守的标准。在一个同伴文章中,我们显示出在良好定义的规范不变S矩阵的计算纵向非定域性,获得的结果与在黑洞过程的直接模拟所预测的扩频尽管不是一致的。我们讨论的这种影响到防火墙悖论的应用程序,并估计其预测为接近黑洞和宇宙学视界新物理学的时间和距离尺度。

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