论文标题
矢量贝塞尔梁:一般分类和散射模拟
Vector Bessel beams: general classification and scattering simulations
论文作者
论文摘要
除了许多基本兴趣之外,矢量贝塞尔束还广泛用于光学操纵,材料处理和成像中。但是,这种光束的现有描述仍然是碎片性的,尤其是当考虑到小颗粒的散射时。我们提出了基于横向赫兹向量电位的叠加的各向同性介质中所有现有涡流贝塞尔束类型的新一般分类。该理论框架包含二元性和协调旋转,作为基本矩阵操作,自然描述了各种光束类型之间的所有关系。这导致了贝塞尔束的各种基础,并以圆形的对称能量密度揭示了新型梁类型。我们还讨论了磁场的二次功能(例如能量密度和po矢量),并在各种梁类型之间得出正交关系。总的来说,它提供了可能与应用相关的贝塞尔梁的所有属性的全面参考。接下来,我们将Mueller散射矩阵的形式主义推广到任意贝塞尔束,以占其涡度。最后,我们在ADDA代码中实现了这些光束 - 离散偶极近似的开源并行实现。这可以通过具有任意形状和内部结构的颗粒散射贝塞尔束散射的贝塞尔束散射。
Apart from a lot of fundamental interest, vector Bessel beams are widely used in optical manipulation, material processing, and imaging. However, the existing description of such beams remains fragmentary, especially when their scattering by small particles is considered. We propose a new general classification of all existing vortex Bessel beam types in an isotropic medium based on the superposition of transverse Hertz vector potentials. This theoretical framework contains duality and coordinate rotations as elementary matrix operations and naturally describes all relations between various beam types. This leads to various bases for Bessel beams and uncovers the novel beam type with circularly symmetric energy density. We also discuss quadratic functionals of the fields (such as the energy density and Poynting vector) and derive orthogonality relations between various beam types. Altogether, it provides a comprehensive reference of all properties of Bessel beams that may be relevant for applications. Next we generalize the formalism of the Mueller scattering matrices to arbitrary Bessel beams accounting for their vorticity. Finally, we implement these beams in the ADDA code - an open-source parallel implementation of the discrete dipole approximation. This enables easy and efficient simulation of Bessel-beams scattering by particles with arbitrary shape and internal structure.