van der Laan John D, Wright Jeremy B, Scrymgeour David A, Kemme Shanalyn A, Dereniak Eustace L
Opt Express. 2015 Dec 14;23(25):31874-88. doi: 10.1364/OE.23.031874.
This work quantifies the polarization persistence and memory of circularly polarized light in forward-scattering and isotropic (Rayleigh regime) environments; and for the first time, details the evolution of both circularly and linearly polarized states through scattering environments. Circularly polarized light persists through a larger number of scattering events longer than linearly polarized light for all forward-scattering environments; but not for scattering in the Rayleigh regime. Circular polarization's increased persistence occurs for both forward and backscattered light. The simulated environments model polystyrene microspheres in water with particle diameters of 0.1 μm, 2.0 μm, and 3.0 μm. The evolution of the polarization states as they scatter throughout the various environments are illustrated on the Poincaré sphere after one, two, and ten scattering events.
这项工作量化了圆偏振光在前向散射和各向同性(瑞利区)环境中的偏振持久性和记忆;并且首次详细阐述了圆偏振态和线偏振态在散射环境中的演变。在所有前向散射环境中,圆偏振光比线偏振光持续通过更多数量的散射事件更长时间;但在瑞利区散射时并非如此。圆偏振的持久性增加在向前和向后散射光中均会出现。模拟环境对水中直径为0.1μm、2.0μm和3.0μm的聚苯乙烯微球进行建模。在经过一次、两次和十次散射事件后,在庞加莱球上展示了偏振态在各种环境中散射时的演变情况。