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Electrical control of Faraday rotation at a liquid-liquid interface

机译:液-液界面上法拉第旋转的电气控制

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摘要

A theory is developed for the Faraday rotation of light from a monolayer of charged magnetic nanoparticles at an electrified liquid-liquid interface. The polarization fields of neighboring nanoparticles enhance the Faraday rotation. At such interfaces, and for realistic sizes and charges of nanoparticles, their adsorption-desorption can be controlled with a voltage variation <1 V, providing electrovariable Faraday rotation. A calculation based on the Maxwell-Garnett theory predicts that the corresponding redistribution of 40 nm nanoparticles of yttrium iron garnet can switch a cavity with a quality factor larger than 10(4) for light of wavelength 500 nm at normal incidence.
机译:为带电的磁性纳米粒子的单层在带电的液-液界面处的法拉第旋转光发展了一种理论。相邻纳米粒子的极化场增强了法拉第旋转。在这样的界面上,对于纳米颗粒的实际大小和电荷,可以通过<1 V的电压变化来控制其吸附-解吸,从而提供电可变的法拉第旋转。基于Maxwell-Garnett理论的计算预测,钇铁石榴石的40 nm纳米颗粒的相应重新分布可以在垂直入射时切换质量因子大于10(4)的腔,波长为500 nm。

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