Tuning macroscopic body interactions by manipulation of quantum vacuum photon-modes at the nanoscale

Louis Dellieu, O. Deparis, B. Kolarić, M. Sarrazin
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Abstract

We report on a comprehensive theoretical study of a nanostructured cavity system in which we manipulate quantum vacuum photon modes in order to tune the force between cavity boundaries from attractive to repulsive. The presented concept reveals the link between macroscopic forces and the light-matter quantum interactions at the nanoscale. As a case study, the potential interaction energy between a nanopatterned polyethylene slab and a flat polyethylene slab forming a cavity, with a fluid as intervening medium, is calculated. Extremely small corrugations heights appear to be able to turn the interfacial force from attractive to repulsive. This new approach could boost the devices engineering for various applications in surface science.
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在纳米尺度上通过操纵量子真空光子模式来调整宏观体相互作用
我们报告了一个纳米结构空腔系统的综合理论研究,我们操纵量子真空光子模式,以调整腔边界之间的力从吸引到排斥。提出的概念揭示了宏观力与纳米尺度光-物质量子相互作用之间的联系。作为一个实例,计算了以流体为中间介质的纳米图案聚乙烯板与形成空腔的扁平聚乙烯板之间的潜在相互作用能。极小的波纹高度似乎能够将界面力从吸引变为排斥。这种新方法可以促进表面科学中各种应用的器件工程。
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Nanotechnology laboratory and nanoelectronics simulation courses Electronic properties of metal-molecular nanojunctions and networks Enabling antenna design with nano-magnetic materials using machine learning HSPICE macromodel of a PMA racetrack memory Tuning macroscopic body interactions by manipulation of quantum vacuum photon-modes at the nanoscale
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