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单轴晶体中的空间工程偏振态和光学涡旋。

Spatially engineered polarization states and optical vortices in uniaxial crystals.

作者信息

Desyatnikov Anton, Fadeyeva Tatyana A, Shvedov Vladlen G, Izdebskaya Yana V, Volyar Alexander V, Brasselet Etienne, Neshev Dragomir N, Krolikowski Wieslaw, Kivshar Yuri S

机构信息

Department of Physics, Taurida National University, Simferopol, Crimea, Ukraine.

出版信息

Opt Express. 2010 May 10;18(10):10848-63. doi: 10.1364/OE.18.010848.

Abstract

We describe how the propagation of light through uniaxial crystals can be used as a versatile tool towards the spatial engineering of polarization and phase, thereby providing an all-optical technique for vectorial and scalar singular beam shaping in optics. Besides the prominent role played by the linear birefringence, the influence of circular birefringence (the optical activity) is discussed as well and both the monochromatic and polychromatic singular beam shaping strategies are addressed. Under cylindrically symmetric light-matter interaction, the radially, azimuthally, and spirally polarized eigen-modes for the light field are revealed to be of a fundamental interest to describe the physical mechanisms at work when dealing with scalar and vectorial optical singularities. In addition, we also report on nontrivial effects arising from cylindrical symmetry breaking, e.g. tilting the incident beam with respect to the crystal optical axis.

摘要

我们描述了光通过单轴晶体的传播如何能够用作实现偏振和相位空间工程的通用工具,从而为光学中的矢量和标量奇异光束整形提供一种全光学技术。除了线性双折射所起的突出作用外,还讨论了圆双折射(旋光性)的影响,并阐述了单色和多色奇异光束整形策略。在圆柱对称的光与物质相互作用下,光场的径向、方位角和螺旋偏振本征模式对于描述处理标量和矢量光学奇点时起作用的物理机制具有根本意义。此外,我们还报告了圆柱对称性破坏产生的非平凡效应,例如使入射光束相对于晶体光轴倾斜。

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