论文标题

Casimir力量,因果关系和Gurzhi模型

The Casimir force, causality and the Gurzhi model

论文作者

Klimchitskaya, G. L., Mostepanenko, V. M., Yu, Kailiang, Woods, L. M.

论文摘要

一种被称为Gurzhi模型的扩展的Drude模型,该模型考虑了电子播音和电子电子相互作用,用于计算两个金属板之间的Casimir力。结果表明,尽管Gurzhi模型的介电介电常数在复杂频率的上半平面中具有一阶极,因此违反了因果关系原理,但可以在限制的频率间隔中使用它,并结合由光学数据确定的实验介电特性,用于折射的复杂指数。 Au在低频下的Gurzhi介电介电常数的假想部分与光学数据给出的介电相比,与简单的DRUDE模型相比,具有更好的一致性。使用Gurzhi,Drude和等离子体模型方法计算两个AU板之间的Casimir压力,并考虑到光学数据以及简单的Drude和等离子体模型。估计电子电子散射对Casimir压力的贡献。尽管与两个精确实验的测量数据进行了比较,表明Gurzhi模型无法解决Casimir拼图,但获得的结果表明进一步澄清了这一基本问题。

An extended Drude model, termed as the Gurzhi model, which takes into account the electron-phonon and electron-electron interactions, is applied to calculate the Casimir force between two metallic plates. It is shown that although the dielectric permittivity of the Gurzhi model has a first order pole in the upper half-plane of complex frequencies and, thus, violates the causality principle, it can be used in a restricted frequency interval in combination with the experimental permittivity determined by the optical data for the complex index of refraction. The imaginary part of the Gurzhi dielectric permittivity of Au at low frequencies demonstrates better agreement with the permittivity given by the optical data than the simple Drude model. The Casimir pressure between two Au plates is computed using the Gurzhi, Drude and plasma model approaches, taking into account the optical data, as well as with the simple Drude and plasma models. The contribution of the electron-electron scattering to the Casimir pressure is estimated. Although a comparison with the measurement data of two precise experiments show that the Gurzhi model does not resolve the Casimir puzzle, the obtained results suggest further clarification of this fundamental problem.

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