Entropy production due to spacetime fluctuations

IF 3.6 3区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS Classical and Quantum Gravity Pub Date : 2024-12-31 DOI:10.1088/1361-6382/ada083
Thiago H Moreira and Lucas C Céleri
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Abstract

Understanding the quantum nature of the gravitational field is undoubtedly one of the greatest challenges in theoretical physics. Despite significant progress, a complete and consistent theory remains elusive. However, in the weak field approximation—where curvature effects are small—we can explore some expected properties of such a theory. Particularly relevant to this study is the quantum nature of gravitational waves, which are represented as small perturbations in flat spacetime. In this framework, a quantum description of these perturbations, as a quantum field, is feasible, leading to the emergence of the graviton. Here we consider a non-relativistic quantum system interacting with such a field. We employ the consistent histories approach to quantum mechanics, which allows us to frame classical questions in a quantum context, to define a fluctuation relation for this system. As a result, thermodynamic entropy must be produced in the system due to its unavoidable interaction with the quantum fluctuations of spacetime.
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由时空波动产生的熵
理解引力场的量子性质无疑是理论物理学中最大的挑战之一。尽管取得了重大进展,但一个完整而一致的理论仍然难以捉摸。然而,在弱场近似中,曲率效应很小,我们可以探索这种理论的一些预期性质。与这项研究特别相关的是引力波的量子性质,它被表示为平坦时空中的小扰动。在这个框架中,这些扰动的量子描述,作为一个量子场,是可行的,导致引力子的出现。这里我们考虑一个与这样一个场相互作用的非相对论量子系统。我们采用量子力学的一致历史方法,它允许我们在量子背景下构建经典问题,以定义该系统的涨落关系。因此,由于系统不可避免地与时空的量子涨落相互作用,必然会在系统中产生热力学熵。
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来源期刊
Classical and Quantum Gravity
Classical and Quantum Gravity 物理-天文与天体物理
CiteScore
7.00
自引率
8.60%
发文量
301
审稿时长
2-4 weeks
期刊介绍: Classical and Quantum Gravity is an established journal for physicists, mathematicians and cosmologists in the fields of gravitation and the theory of spacetime. The journal is now the acknowledged world leader in classical relativity and all areas of quantum gravity.
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