论文标题

通过因果层上的量子相干性的全息图现象学

Phenomenology of Holography via Quantum Coherence on Causal Horizons

论文作者

Kwon, Ohkyung

论文摘要

在紧急背景时空中,朝着全息量子不确定性的干涉测量方面有很多发展。尽管对普朗克应变功率谱密度的目标检测状态的希望越来越大,但激励理论的基础见解尚未与现实实验中测得的可观察到的现象学模型相关。这项工作提出了一个候选模型,基于中心假设,即所有视野都是连贯的量子信息的通用边界 - 观察者发生时空的变形。该预测的灵感来自hooft的代数,用于黑洞信息,该信息使连贯的状态在地平线上,Verlinde和Zurek显示了其空间相关性,也显示出在平面时空(共同杀人界)的因果边界的全息波动上出现的。时间域相关性来自普兰克的烦恼,其连贯性量表与因果钻石相匹配,这是由银行出现时空和当地框架的框架所激发的。 The universality of this coherence on causal horizo​​ns compels a multimodal research program probing concordant signatures: An analysis of cosmological data to probe primordial correlations, motivated by Hogan's interpretation of well-known CMB anomalies as coherent fluctuations on the inflationary horizo​​n, and upcoming 3D interferometers to probe causal diamonds in flat space-time.提出了候选干涉仪的几何形状,每个设计都有建模的频谱。

There is much recent development towards interferometric measurements of holographic quantum uncertainties in an emergent background space-time. Despite increasing promise for the target detection regime of Planckian strain power spectral density, the foundational insights of the motivating theories have not been connected to a phenomenological model of observables measured in a realistic experiment. This work proposes a candidate model, based on the central hypothesis that all horizons are universal boundaries of coherent quantum information -- where the decoherence of space-time happens for the observer. The prediction is inspired by 't Hooft's algebra for black hole information that gives coherent states on horizons, whose spatial correlations were shown by Verlinde and Zurek to also appear on holographic fluctuations of causal boundaries in flat space-time (conformal Killing horizons). Time-domain correlations are projected from Planckian jitters whose coherence scales match causal diamonds, motivated by Banks' framework for the emergence of space-time and locality. The universality of this coherence on causal horizons compels a multimodal research program probing concordant signatures: An analysis of cosmological data to probe primordial correlations, motivated by Hogan's interpretation of well-known CMB anomalies as coherent fluctuations on the inflationary horizon, and upcoming 3D interferometers to probe causal diamonds in flat space-time. Candidate interferometer geometries are presented, with a modeled frequency spectrum for each design.

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