Tribelsky Michael I, Rubinstein Boris Y
Faculty of Physics, M. V. Lomonosov Moscow State University, 119991 Moscow, Russia.
Center for Photonics and 2D Materials, Moscow Institute of Physics and Technology, 141700 Dolgoprudny, Russia.
Nanomaterials (Basel). 2022 Sep 13;12(18):3164. doi: 10.3390/nano12183164.
We present the results of a study of the Poynting vector field generic singularities at the resonant light scattering of a plane monochromatic linearly polarized electromagnetic wave by a subwavelength particle. We reveal the impact of the problem symmetry, the spatial dimension, and the energy conservation law on the properties of the singularities. We show that, in the cases when the problem symmetry results in the existence of an invariant plane for the Poynting vector field lines, a formation of a standing wave in the immediate vicinity of a singularity gives rise to a saddle-type singular point. All other types of singularities are associated with vanishing at the singular points, either (i) magnetic field, for the polarization plane parallel to the invariant plane, or (ii) electric field, at the perpendicular orientation of the polarization plane. We also show that in the case of two-dimensional problems (scattering by a cylinder), the energy conservation law restricts the types of possible singularities only to saddles and centers in the non-dissipative media and to saddles, foci, and nodes in dissipative. Finally, we show that dissipation affects the (i)-type singularities much stronger than the (ii)-type. The same conclusions are valid for the imaginary part of the Poynting vector in problems where the latter is regarded as a complex quantity. The singular points associated with the formation of standing waves are different for real and imaginary parts of this complex vector field, while all other singularities are common. We illustrate the general discussion by analyzing singularities at light scattering by a subwavelength Germanium cylinder with the actual dispersion of its refractive index.
我们展示了一项关于平面单色线偏振电磁波在亚波长粒子共振光散射时坡印廷矢量场一般奇点的研究结果。我们揭示了问题对称性、空间维度和能量守恒定律对奇点性质的影响。我们表明,在问题对称性导致坡印廷矢量场线存在不变平面的情况下,奇点紧邻区域驻波的形成会产生鞍型奇点。所有其他类型的奇点与奇点处(i)对于偏振平面平行于不变平面的磁场,或(ii)对于偏振平面垂直取向的电场的消失相关。我们还表明,在二维问题(圆柱散射)的情况下,能量守恒定律将可能的奇点类型仅限制为非耗散介质中的鞍点和中心点,以及耗散介质中的鞍点、焦点和节点。最后,我们表明耗散对(i)型奇点的影响比对(ii)型奇点的影响要强得多。对于将坡印廷矢量视为复数量的问题中坡印廷矢量的虚部,同样的结论成立。与驻波形成相关的奇点对于该复矢量场的实部和虚部是不同的,而所有其他奇点是相同的。我们通过分析具有实际折射率色散的亚波长锗圆柱光散射时的奇点来说明一般讨论。