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首页> 外文期刊>International Journal of Theoretical Physics >Quantum Evolution in Fluctuating Backgrounds: Nonideal Clocks and Foam-Like Spacetimes
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Quantum Evolution in Fluctuating Backgrounds: Nonideal Clocks and Foam-Like Spacetimes

机译:波动背景下的量子演化:非理想时钟和类似泡沫的时空

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I characterize good clocks, which are naturally subject to fluctuations, in statistical terms, obtain the master equation that governs the evolution of quantum systems according to these clocks, and find its general solution. This master equation is diffusive and produces loss of coherence. Moreover, real clocks can be described in terms of effective interactions that are nonlocal in time. Alternatively, they can be modeled by an effective thermal bath coupled to the system. I also study some aspects concerning the evolution of quantum low-energy fields in a foamlike spacetime, with involved topology at the Planck scale but with a smooth metric structure at large length scales. This foamlike structure of spacetime may show up in low-energy physics through loss of quantum coherence and mode-dependent energy shifts, for instance, which might be observable. Spacetime foam introduces nonlocal interactions that can be modeled by a quantum bath, and low-energy fields evolve according to a master equation that displays such effects. These evolution laws are similar to those for quantum mechanical systems evolving according to good nonideal clocks, although the underlying Hamiltonian structure in this case establishes some differences among both scenarios.
机译:我用统计术语来表征良好的时钟,这些时钟自然会受到波动的影响,获得了根据这些时钟控制量子系统演化的主方程,并找到了它的一般解。这个主方程是扩散性的,会导致相干性损失。此外,可以根据时间上非本地的有效交互来描述实际时钟。或者,可以通过与系统耦合的有效热浴对它们进行建模。我还研究了泡沫状时空中量子低能场演化的某些方面,涉及的普朗克尺度拓扑结构,但在大尺度尺度上具有光滑的度量结构。这种泡沫状的时空结构可能会通过降低量子相干性和依赖于模式的能量转移而出现在低能物理学中,例如,这是可以观察到的。时空泡沫引入了可以通过量子浴来建模的非局部相互作用,低能场根据显示此类效应的主方程演化。这些演化定律与根据良好的非理想时钟演化的量子力学系统的演化定律相似,尽管在这种情况下潜在的哈密顿结构在两种情况之间建立了一些差异。

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