Algebraic Properties of Quantum Reference Frames: Does Time Fluctuate?

Q2 Physics and Astronomy
M. Bojowald, Artur Tsobanjan
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引用次数: 0

Abstract

Quantum reference frames are expected to differ from classical reference frames because they have to implement typical quantum features such as fluctuations and correlations. Here, we show that fluctuations and correlations of reference variables, in particular of time, are restricted by their very nature of being used for reference. Mathematically, this property is implemented by imposing constraints on the system to make sure that reference variables are not physical degrees of freedom. These constraints not only relate physical degrees of freedom to reference variables in order to describe their behavior, they also restrict quantum fluctuations of reference variables and their correlations with system degrees of freedom. We introduce the notion of “almost-positive” states as a suitable mathematical method. An explicit application of their properties to examples of recent interest in quantum reference frames reveals previously unrecognized restrictions on possible frame–system interactions. While currently discussed clock models rely on assumptions that, as shown here, make them consistent as quantum reference frames, relaxing these assumptions will expose the models to new restrictions that appear to be rather strong. Almost-positive states also shed some light on a recent debate about the consistency of relational quantum mechanics.
量子参考系的代数性质:时间会波动吗?
量子参考系与经典参考系不同,因为它们必须实现典型的量子特征,如涨落和相关性。在这里,我们表明参考变量的波动和相关性,特别是时间的波动和相关性,受到它们用作参考的性质的限制。在数学上,这个属性是通过对系统施加约束来实现的,以确保引用变量不是物理自由度。这些约束不仅将物理自由度与参考变量联系起来以描述它们的行为,而且还限制了参考变量的量子涨落及其与系统自由度的相关性。我们引入了“几乎正”状态的概念作为一种合适的数学方法。将它们的性质明确应用于最近对量子参照系感兴趣的例子,揭示了以前未被认识到的可能的参照系相互作用的限制。虽然目前讨论的时钟模型依赖于假设,如这里所示,使它们作为量子参考框架一致,放松这些假设将使模型暴露于似乎相当强的新限制。几乎正态也为最近关于关系量子力学一致性的争论提供了一些启示。
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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来源期刊
Quantum Reports
Quantum Reports Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
3.30
自引率
0.00%
发文量
33
审稿时长
10 weeks
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