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边界处的真空卡西米尔能量密度和场发散

Vacuum Casimir energy densities and field divergences at boundaries.

作者信息

Bartolo Nicola, Butera Salvatore, Lattuca Margherita, Passante Roberto, Rizzuto Lucia, Spagnolo Salvatore

机构信息

INO-CNR BEC Center and Dipartimento di Fisica, Università di Trento, I-38123 Povo, Italy. Laboratoire Charles Coulomb (L2C), UMR 5221 CNRS-Université Montpellier 2, Montpellier, France.

出版信息

J Phys Condens Matter. 2015 Jun 3;27(21):214015. doi: 10.1088/0953-8984/27/21/214015. Epub 2015 May 12.

Abstract

We consider and review the emergence of singular field fluctuations or energy densities at sharp boundaries or point-like field sources in the vacuum. The presence of singular energy densities of a field may be relevant from a conceptual point of view, because they contribute to the self-energy of the system. They could also generate significant gravitational effects. We first consider the case of the interface between a metallic boundary and the vacuum, and obtain the structure of the singular electric and magnetic energy densities at the interface through an appropriate limit from a dielectric to an ideal conductor. Then, we consider the case of a nondispersive and nondissipative point-like source of the electromagnetic field, described by its polarizability, and show that also in this case the electric and magnetic energy densities show a singular structure at the source position. We discuss how, in both cases, these singularities give an essential contribution to the electromagnetic self-energy of the system; moreover, they solve an apparent inconsistency between the space integral of the field energy density and the average value of the field Hamiltonian. The singular behavior we find is softened, or even eliminated, for boundaries fluctuating in space and for extended field sources. We discuss in detail the case in which a reflecting boundary is not fixed in space but is allowed to move around an equilibrium position, under the effect of quantum fluctuations of its position. Specifically, we consider the simple case of a 1D massless scalar field in a cavity with one fixed and one mobile wall described quantum-mechanically. We investigate how the possible motion of the wall changes the vacuum fluctuations and the energy density of the field, compared with the fixed-wall case. Also, we explicitly show how the fluctuating motion of the wall smears out the singular behaviour of the field energy density at the boundary.

摘要

我们考虑并回顾了真空中尖锐边界或点状场源处奇异场涨落或能量密度的出现。从概念角度来看,场的奇异能量密度的存在可能具有相关性,因为它们对系统的自能有贡献。它们还可能产生显著的引力效应。我们首先考虑金属边界与真空之间的界面情况,并通过从电介质到理想导体的适当极限,得到界面处奇异的电和磁能量密度的结构。然后,我们考虑由其极化率描述的非色散和非耗散的点状电磁场源的情况,并表明在这种情况下,电和磁能量密度在源位置也呈现出奇异结构。我们讨论了在这两种情况下,这些奇点如何对系统的电磁自能做出重要贡献;此外,它们解决了场能量密度的空间积分与场哈密顿量平均值之间明显的不一致性。对于在空间中波动的边界和扩展的场源,我们发现的奇异行为会被软化,甚至消除。我们详细讨论了反射边界在空间中不固定而是在其位置的量子涨落影响下围绕平衡位置移动的情况。具体来说,我们考虑在量子力学描述的具有一个固定壁和一个移动壁的腔中一维无质量标量场的简单情况。我们研究与固定壁情况相比,壁的可能运动会如何改变真空涨落和场的能量密度。此外,我们明确展示了壁的波动运动如何消除边界处场能量密度的奇异行为。

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