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Polarization-controllable Airy beams generated via a photoaligned director-variant liquid crystal mask

机译:通过光取向定向变液晶掩模产生的可控偏振的艾里光束

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Researches on Airy beams have grown explosively since the first demonstration in 2007 due to the distinguishing properties of nondiffraction, transverse acceleration and self-healing. To date, a simple and compact approach for generating Airy beams in high quality and efficiency has remained challenging. Here, we propose and demonstrate a liquid crystal (LC) polarization Airy mask (PAM) featured by spatially variant LC azimuthal director. The PAM is fabricated through photoaligning LC via a polarization-sensitive alignment agent suophonic azo dye SD1. Thanks to the special design, a novel feature of polarization-controllable switch between dual Airy beams of orthogonal circular polarization is presented. The molecular-level continuity of LC director significantly improves the quality and efficiency of resultant Airy beams. Besides, the PAM can handle intense light due to the absence of absorptive electrodes. Additional merits of compact size, low cost and broad wavelength tolerance are also exhibited. This work settles a fundamental requirement for Airy beam applications of optical manipulations, biology science and even some uncharted territories.
机译:自2007年首次演示以来,由于不衍射,横向加速度和自愈的独特特性,对艾里光束的研究得到了爆炸性的发展。迄今为止,用于产生高质量和高效率的艾里光束的简单而紧凑的方法仍然具有挑战性。在这里,我们提出并演示了一种液晶(LC)偏振艾里掩模(PAM),其特征是空间变异LC方位角指向矢。通过偏振敏感取向剂suophonic偶氮染料SD1通过光取向LC制备PAM。由于特殊的设计,提出了一种在正交圆偏振的双艾里光束之间进行偏振可控切换的新颖功能。 LC指向矢的分子水平连续性显着提高了所得艾里光束的质量和效率。此外,由于没有吸收电极,PAM可以处理强光。还显示出紧凑的尺寸,低成本和宽波长耐受性的其他优点。这项工作满足了光学操纵,生物学乃至某些未知领域对艾里光束应用的基本要求。

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