首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Surface contribution to the electric dipole moment near an interface, and its effect on power emission
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Surface contribution to the electric dipole moment near an interface, and its effect on power emission

机译:表面对界面附近的电偶极矩,及其对发电的影响

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When a small particle is located near an interface, its electric dipole moment can be induced by laser irradiation. Since the laser light reflects at the interface, this leads to an interference pattern, and the dipole moment is determined by this total field. In addition, the dipole radiation emitted by the particle reflects at the interface, and this field adds to the external field. In this fashion, the dipole moment is altered by the field it emits, and as such the emitted radiation modifies its own source. We have derived a simple expression to take this back action into account. We introduce two resolvent functions, Y-parallel to(h) and Y-perpendicular to(h), which depend on the dimensionless distance h between the particle and the interface. These functions exhibit resonance features due to the underlying back-action mechanism. It is shown that two, one, or no resonance peaks appear in the induced dipole moment. Whether these peaks are present depends on the parameters under consideration. The power emitted by the particle depends on h due to interference between the source radiation and the reflected radiation. With the surface induced contribution to the dipole moment included, an additional h dependence appears. This dependence shows the resonance peaks, which may be amenable to experimental observation. (C) 2021 Optical Society of America
机译:当一个小粒子位于界面附近时,它的电偶极矩可以通过激光照射产生。由于激光在界面处反射,因此会产生干涉图样,偶极矩由该总场决定。此外,粒子发射的偶极子辐射在界面处反射,该场增加了外场。以这种方式,偶极矩会因其发射的场而改变,因此发射的辐射会改变其自身的源。我们推导了一个简单的表达式来考虑这个返回动作。我们引入了两个预解函数,Y-平行于(h)和Y-垂直于(h),它们取决于粒子与界面之间的无量纲距离h。由于潜在的反作用机制,这些功能表现出共振特征。结果表明,在诱导偶极矩中出现两个、一个或没有共振峰。这些峰值是否存在取决于所考虑的参数。由于源辐射和反射辐射之间的干扰,粒子发射的功率取决于h。考虑到表面诱导对偶极矩的贡献,出现了额外的h依赖性。这种依赖性显示了共振峰,这可能符合实验观察。(2021)美国光学学会

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