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Singular Resonance in Fluctuation-Induced Electromagnetic Phenomena at the Rotation of a Nanoparticle near the Surface of a Condensed Medium

机译:在冷凝介质表面附近的纳米颗粒的旋转旋转中的波动诱导电磁现象的奇异共振

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摘要

It has been shown that the rotation of a spherical nanoparticle with the radius R near the surface of a semi-infinite homogeneous medium can result in singular resonance in fluctuation-induced electromagnetic phenomena (Casimir force, Casimir friction, and radiative heat generation). Fluctuation electromagnetic effects increase strongly near this resonance even in the presence of dissipation in the system. The resonance occurs at distances of the particle from the surface d d(0)R(3/4 epsilon(1)((1))epsilon(2) ((2)))(1/3) (where epsilon(i)((i)) is the imaginary part of the dielectric function of the particle or the medium at the frequency of a surface phonon or plasmon polariton (i)), when the rotation frequency coincides with poles in the photon generation rate at approximate to (1) + (2). These poles are due to the multiple scattering of electromagnetic waves between the particle and surface under conditions of the anomalous Doppler effect. These poles exist even in the presence of dissipation. At d d(0), depending on the particle rotation frequency, the Casimir force can change sign; i.e., the attraction of the particle to the surface changes to repulsion. The results can be important for the development of experimental methods for the detection of quantum friction.
机译:已经表明,球形纳米颗粒与半无限均匀介质的表面附近的半径R的旋转可以导致波动诱导的电磁现象(Casimir力,Casimir摩擦和辐射发热)的奇异共振。即使在系统中耗散存在,波动电磁效应也会增加这种共振近。共振发生在颗粒的距离从表面d& d(0)r(3/4ε(1)((1))ε(2)((2)))(1/3)(其中epsilon(i)((i))是虚构的部分当旋转频率在近似(1)+(2)时,当旋转频率与光子产生速率中的磁极在旋转频率重合时,粒子或等离子体Polariton(I))的介质函数。这些磁极是由于在异常多普勒效应的条件下颗粒和表面之间的电磁波的多次散射。即使在存在耗散的情况下也存在这些杆。在D& D(0),取决于粒子旋转频率,Casimir力可以改变标志;即,颗粒对表面变化的粒子的吸引力。结果对于开发用于检测量子摩擦的实验方法可能是重要的。

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  • 来源
    《JETP Letters》 |2018年第2期|共8页
  • 作者

    Volokitin A. I.;

  • 作者单位

    Samara State Tech Univ Samara 443100 Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
  • 关键词

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