论文标题

波动电动力学进出平衡

Fluctuational electrodynamics in and out of equilibrium

论文作者

Brevik, Iver, Shapiro, Boris, Silveirinha, Mário

论文摘要

中性材料体之间的分散力是由于身体极化的波动所致。对于平衡中的身体,这些力通常称为Casimir-Lifshitz力。对于相对运动中的身体,除了Casimir-Lifshitz力外,侧向摩擦力(“量子摩擦”,在零温度极限中)也发挥了作用。波动引起的力的广泛接受的理论是基于“波动电动力学”的,当麦克斯韦方程被负责介质极化波动的随机电流源补充时。 本文的第一部分涉及该理论的一些概念问题,例如无耗散限制以及Rytov的方法与量子电动力学之间的联系。我们指出了仍然出现在文献中的无耗散等离子体模型的问题(其非物理双极以零频率为零)。 本文的第二部分从广义上讲是“量子摩擦”,其中包含一些新颖的材料。特别是指出,在弱耗散系统中,摩擦力可能不是固定过程。使用“精确”(非定位的)量子处理表明,在适当条件下,当动能(由于身体之间的相对运动)转化为相干辐射时,可能会发生不稳定性(最终受非线性效应限制了不稳定性)。我们还讨论了两个物体静止的设置,但是其中一个物体中流动恒定的电流。有人可能会说,与另一个身体相对于另一个身体的电子成分被拖动,这与通常的设置相对运动时,相对设置。显然,两个设置之间的摩擦力存在差异。

Dispersion forces between neutral material bodies are due to fluctuations of the polarization of the bodies. For bodies in equilibrium these forces are often referred to as Casimir-Lifshitz forces. For bodies in relative motion, in addition to the Casimir-Lifshitz force, a lateral frictional force ("quantum friction", in the zero temperature limit) comes into play. The widely accepted theory of the fluctuation induced forces is based on the "fluctuational electrodynamics" , when the Maxwell equations are supplemented by random current sources responsible for the fluctuations of the medium polarization. The first part of our paper touches on some conceptual issues of the theory, such as the dissipation-less limit and the link between Rytov's approach and quantum electrodynamics. We point out the problems with the dissipation-less plasma model (with its unphysical double pole at zero frequency) which still appears in the literature. The second part of the paper is devoted to "quantum friction", in a broad sense, and it contains some novel material. In particular, it is pointed out that in weakly dissipative systems the friction force may not be a stationary process. It is shown, using an "exact" (nonpertubative) quantum treatment that under appropriate conditions, an instability can occur when the kinetic energy (due to the relative motion between the bodies) is transformed into coherent radiation, exponentially growing in intensity (the instability gets eventually limited by non-linear effects). We also discuss a setup when the two bodies are at rest but a constant electric current is flowing in one of the bodies. One may say that only the electron component of one body is dragged with respect to the other body, unlike the usual setup when the two bodies are in relative motion. Clearly there are differences in the frictional forces between the two setups.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源