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光束偏振和功率在向列型液晶中的双重作用:TE 光束与 TM 光束相互作用的综合研究

Dual Role of Beam Polarization and Power in Nematic Liquid Crystals: A Comprehensive Study of TE- and TM-Beam Interactions.

作者信息

Kwaśny Michał, Klus Bartłomiej Wojciech, Laudyn Urszula Anna

机构信息

Faculty of Physics, Warsaw University of Technology, Koszykowa 75, 00-662 Warsaw, Poland.

出版信息

Materials (Basel). 2024 Feb 22;17(5):999. doi: 10.3390/ma17050999.

Abstract

Optical spatial solitons are self-guided wave packets that maintain their transverse profile due to the self-focusing effect of light. In nematic liquid crystals (NLC), such light beams, called nematicons, can be induced by two principal mechanisms: light-induced reorientation of the elongated molecules and thermal changes in the refractive index caused by partial light absorption. This paper presents a detailed investigation of the propagation dynamics of light beams in nematic liquid crystals (NLCs) doped with Sudan Blue dye. Building on the foundational understanding of reorientational and thermal solitons in NLCs and the effective breaking of the action-reaction principle in spatial solitons, this study examines the interaction of infrared (IR) and visible beams in a [-4-(trans-4'-exylcyclohexyl)isothiocyanatobenzene] (6CHBT) NLC. Our experimental results highlight the intricate interplay of beam polarizations, power levels, and the nonlinear properties of NLCs, offering new insights into photonics and nonlinear optics in liquid crystals.

摘要

光学空间孤子是由于光的自聚焦效应而保持其横向轮廓的自导波包。在向列型液晶(NLC)中,这种被称为向列子的光束可由两种主要机制诱导产生:光诱导细长分子的重新取向以及部分光吸收引起的折射率热变化。本文详细研究了掺杂苏丹蓝染料的向列型液晶(NLC)中光束的传播动力学。基于对NLC中重新取向孤子和热孤子的基本理解以及空间孤子中作用 - 反作用原理的有效打破,本研究考察了[-4 - (反式 - 4'-己基环己基)异硫氰酸苯酯](6CHBT)NLC中红外(IR)光束与可见光束的相互作用。我们的实验结果突出了光束偏振、功率水平以及NLC非线性特性之间的复杂相互作用,为液晶中的光子学和非线性光学提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31c6/10934147/969ef8f7bd22/materials-17-00999-g001.jpg

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