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Radiative corrections to the polarizability tensor of an electrically small anisotropic dielectric particle

机译:电学各向异性各向异性介电粒子极化率张量的辐射校正

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摘要

Radiative corrections to the polarizability tensor of isotropic particles are fundamental to understand the energy balance between absorption and scattering processes. Equivalent radiative corrections for anisotropic particles are not well known. Assuming that the polarization within the particle is uniform, we derived a closed-form expression for the polarizability tensor which includes radiative corrections. In the absence of absorption, this expression of the polarizability tensor is consistent with the optical theorem. An analogous result for infinitely long cylinders was also derived. Magneto optical Kerr effects in non-absorbing nanoparticles with magneto-optical activity arise as a consequence of radiative corrections to the electrostatic polarizability tensor.
机译:对各向同性粒子的极化率张量进行辐射校正对于了解吸收和散射过程之间的能量平衡至关重要。各向异性粒子的等效辐射校正不是众所周知的。假设粒子内的极化是均匀的,我们导出了极化率张量的封闭形式,其中包括辐射校正。在没有吸收的情况下,极化率张量的这种表达与光学定理一致。还得出了无限长圆柱体的类似结果。由于静电极化率张量的辐射校正,在具有磁光活性的非吸收性纳米颗粒中产生了磁光Kerr效应。

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