光电晶体表面向列液晶材料无梗液滴的光学操控

Ridvan Karapinar, L. Cmok, Xinzheng Zhang, I. Drevenšek‐Olenik
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引用次数: 0

摘要

摘要我们研究了激光照射对沉积在掺铁铌酸锂(LN:Fe)晶体表面的三种著名液晶材料(5CB、8CB、E7)无柄液滴的影响。通过 LN:Fe 基质中的体光电效应产生的静态电场会使较小的液滴合并成丝状,其方向与激光光斑的径向方向一致。此外,它还会诱导灯丝从较大液滴的边缘向照明区域的中心喷射。当激光束直接聚焦在较大的液滴上时,这些液滴会通过形成多个喷射流而突然解体。所述效应在向列相和各向同性相中都存在。我们将其归因于表面电场的巨大梯度,它通过液滴的诱导偶极矩产生驱动力,类似于标准介电液体中已知的基于电场的液滴传输机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optical manipulation of sessile droplets of nematic liquid crystalline materials on the surface of a photovoltaic crystal
Abstract. We investigated the effects of laser irradiation on sessile droplets of three well-known liquid crystalline materials (5CB, 8CB, E7) deposited on the surface of an iron-doped lithium niobate (LN:Fe) crystal. The static electric field, which is generated via the bulk photovoltaic effect in the LN:Fe substrate, produces the merging of smaller droplets into filaments oriented in the radial direction with respect to the laser spot. It also induces filament jetting from the rim of larger droplets toward the center of the illumination area. When the laser beam is focused directly onto the larger droplets, they abruptly disintegrate via the formation of several jet streams. The described effects are present in the nematic and also in the isotropic phase. We attribute them to a large gradient of the surface electric field that produces driving forces via the induced dipole moments of the droplets, analogous to electric field-based droplets transport mechanisms known for standard dielectric liquids.
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