论文标题

非平衡Casimir扭矩的痕量表达式和相关限制

Trace Expressions and Associated Limits for Non-Equilibrium Casimir Torque

论文作者

Strekha, Benjamin, Molesky, Sean, Chao, Pengning, Krüger, Matthias, Rodriguez, Alejandro W.

论文摘要

我们利用波动电动力学来介绍在被动,非吸收,旋转不变的背景环境中任意物体经历的扭矩。这种形式主义专门针对单个物体,以及最近开发的用于通过拉格朗日二重性来计算边界的技术,然后用于在最大的Casimir扭矩上得出限制,即具有各向异性电敏感性的单个对象在与周围环境之间的平衡时可以体验到。显示在任何波长下可实现的最大扭矩与亚波长度(准义学)和宏观(射线光学)设置的体积成比例,并在拓扑优化的身体上可实现的扭矩范围内。最后,我们讨论了如何将形式主义扩展到多个身体,从而导致了两个亚波长粒子相互接近的扭矩表达式。

We exploit fluctuational electrodynamics to present trace expressions for the torque experienced by arbitrary objects in a passive, non-absorbing, rotationally invariant background environment. Specializing to a single object, this formalism, together with recently developed techniques for calculating bounds via Lagrange duality, is then used to derive limits on the maximum Casimir torque that a single object with an isotropic electric susceptibility can experience when out of equilibrium with its surrounding environment. The maximum torque achievable at any wavelength is shown to scale in proportion to body volumes in both subwavelength (quasistatics) and macroscopic (ray optics) settings, and come within an order of magnitude of achievable torques on topology optimized bodies. Finally, we discuss how to extend the formalism to multiple bodies, deriving expressions for the torque experienced by two subwavelength particles in proximity to one another.

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