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Rotational synchronization of two noncontact nanoparticles

机译:两种非接触纳米颗粒的旋转同步

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Proposing a system of two rotatable nanoparticles (NPs) in the presence of electromagnetic vacuum fluctuations, using the framework of canonical quantization, the electromagnetic and matter fields have been quantized. The noncontact frictional torque, which affects the rotation of NPs due to the presence of electromagnetic vacuum fluctuations and also due to the matter field fluctuations, has been derived. Considering a distance between NPs of less than 100 nm in the near field, we observe that the rotations are phase locked. It has been shown that electromagnetic vacuum fluctuation plays the role of noise that breaks down the synchronization. Also, surprisingly, we find that the frictional torque between NPs in the near field is much bigger than the popular contact friction between them, where it causes robust synchronization in the near field. (C) 2017 Optical Society of America
机译:在存在电磁真空波动的情况下,使用规范量化框架,用规范量化框架提出了两个可旋转纳米颗粒(NPS)的系统。 由于存在电磁真空波动和由于物质场波动而导致NPS旋转的非接触式摩擦扭矩。 在近场中,考虑到少于100nm的NPS之间的距离,我们观察到旋转是阶段锁定的。 已经表明,电磁真空波动起到断裂同步的噪声的作用。 此外,令人惊讶的是,我们发现近场中NP之间的摩擦扭矩比它们之间的流行接触摩擦大得多,在那里它导致近场中的鲁棒同步。 (c)2017年光学学会

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