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关于通过超导腔测量卡西米尔能量的变化。

Towards measuring variations of Casimir energy by a superconducting cavity.

作者信息

Bimonte Giuseppe, Calloni Enrico, Esposito Giampiero, Milano Leopoldo, Rosa Luigi

机构信息

Dipartimento di Scienze Fisiche, Università di Napoli Federico II, Via Cintia, I-80126 Naples, Italy.

出版信息

Phys Rev Lett. 2005 May 13;94(18):180402. doi: 10.1103/PhysRevLett.94.180402. Epub 2005 May 9.

Abstract

We consider a Casimir cavity, one plate of which is a thin superconducting film. We show that when the cavity is cooled below the critical temperature for the onset of superconductivity, the sharp variation (in the far infrared) of the reflection coefficient of the film engenders a variation in the value of the Casimir energy. Even though the relative variation in the Casimir energy is very small, its magnitude can be comparable to the condensation energy of the superconducting film, and this gives rise to a number of testable effects, including a significant increase in the value of the critical magnetic field, required to destroy the superconductivity of the film. The theoretical ground is therefore prepared for the first experiment ever aimed at measuring variations of the Casimir energy itself.

摘要

我们考虑一个卡西米尔腔,其一块极板是一层薄超导薄膜。我们表明,当该腔冷却至超导开始的临界温度以下时,薄膜反射系数(在远红外波段)的急剧变化会导致卡西米尔能量值发生变化。尽管卡西米尔能量的相对变化非常小,但其大小可能与超导薄膜的凝聚能相当,这会产生一些可测试的效应,包括破坏薄膜超导性所需的临界磁场值显著增加。因此,为有史以来首次旨在测量卡西米尔能量本身变化的实验奠定了理论基础。

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