论文标题
无损,吸收和光学增益状态下的Kerker条件
Kerker Conditions Upon Lossless, Absorption, and Optical Gain Regimes
论文作者
论文摘要
当电介质球散射的散射可以通过电和磁性偶极模式描述时,光的方向性和极化表现出独特的特性。特别是,当这些模式在所谓的第一个kerker条件下以相等的幅度振荡性内相同时,对于非隔离球体而出现了零光学反向散射条件。然而,在第一个kerker条件下,吸收和光学增益的作用仍未探索。在这项工作中,我们证明了吸收或光学增益排除了第一个Kerker条件,因此,无论粒子的大小,入射波长和传入的极化,都没有反向散射的辐射光。最后,我们得出了零正向光散射的第二个Kerker条件的必要先决条件,发现光增益是强制性的要求。
The directionality and polarization of light show peculiar properties when the scattering by a dielectric sphere can be described exclusively by electric and magnetic dipolar modes. Particularly, when these modes oscillate in-phase with equal amplitude, at the so-called first Kerker condition, the zero optical backscattering condition emerges for non-dissipating spheres. However, the role of absorption and optical gain in the first Kerker condition remains unexplored. In this work, we demonstrate that either absorption or optical gain precludes the first Kerker condition and, hence, the absence of backscattered radiation light, regardless of the size of the particle, incident wavelength, and incoming polarization. Finally, we derive the necessary prerequisites of the second Kerker condition of the zero forward light scattering, finding that optical gain is a compulsory requirement.