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球-板-球系统中卡西米尔效应的观测与控制

Observation and control of Casimir effects in a sphere-plate-sphere system.

作者信息

Xu Zhujing, Ju Peng, Gao Xingyu, Shen Kunhong, Jacob Zubin, Li Tongcang

机构信息

Department of Physics and Astronomy, Purdue University, West Lafayette, IN, 47907, USA.

Elmore Family School of Electrical and Computer Engineering, Purdue University, West Lafayette, IN, 47907, USA.

出版信息

Nat Commun. 2022 Oct 18;13(1):6148. doi: 10.1038/s41467-022-33915-4.

Abstract

A remarkable prediction of quantum field theory is that there are quantum electromagnetic fluctuations (virtual photons) everywhere, which leads to the intriguing Casimir effect. While the Casimir force between two objects has been studied extensively for several decades, the Casimir force between three objects has not been measured yet. Here, we report the experimental demonstration of an object under the Casimir force exerted by two other objects simultaneously. Our Casimir system consists of a micrometer-thick cantilever placed in between two microspheres, forming a unique sphere-plate-sphere geometry. We also propose and demonstrate a three-terminal switchable architecture exploiting opto-mechanical Casimir interactions that can lay the foundations of a Casimir transistor. Beyond the paradigm of Casimir forces between two objects in different geometries, our Casimir transistor represents an important development for controlling three-body virtual photon interactions and will have potential applications in sensing and information processing.

摘要

量子场论的一个显著预测是,在任何地方都存在量子电磁涨落(虚光子),这导致了引人入胜的卡西米尔效应。虽然两个物体之间的卡西米尔力已经被广泛研究了几十年,但三个物体之间的卡西米尔力尚未被测量。在此,我们报告了一个物体同时受到另外两个物体施加的卡西米尔力的实验演示。我们的卡西米尔系统由一个置于两个微球之间的微米厚悬臂组成,形成了独特的球 - 板 - 球几何结构。我们还提出并演示了一种利用光机械卡西米尔相互作用的三端可切换架构,该架构可为卡西米尔晶体管奠定基础。超越了不同几何形状中两个物体之间卡西米尔力的范式,我们的卡西米尔晶体管是控制三体虚光子相互作用的一项重要进展,并将在传感和信息处理方面具有潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d890/9579181/0a3f7298f06b/41467_2022_33915_Fig1_HTML.jpg

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