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Optical manipulation and defect creation in a liquid crystal on a photoresponsive surface

机译:光反应表面上液晶中的光学操纵和缺陷创建

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Light-induced modulations of the refractive index and pattern formation are desirable to generate complex photonic structures via exposure to light. Here we show that local modulations of the effective refractive index and reconfigurable defects can be locally induced in a hybridized thin birefringent film of a nematic liquid crystal (LC) on a photoresponsive (generating photoinduced electric fields) iron doped lithium niobate surface via exposure to a focused laser beam. Samples were studied with a tailored imaging approach, which provided the ability to investigate these optically excited, field-induced responses on a microscopic level. Upon exposure with a focused laser beam, the fluent LC was expanded on the substrate's surface and localized field-induced defects were optically created. Both umbilic (central) and line defects were observed. The formation of field-induced umbilic defects was modeled in numerical simulations. In addition, line defects were experimentally studied. It was seen that line defects interconnected the centers of two central defects (field-induced defects, which were present at the upper and lower surfaces of the LC layer). In addition, line disclinations separating reverse tilt domains (caused by the inhomogeneous distribution of the photogenerated fields) were seen. These line disclinations were pinned to the central defects. By exposure with two adjacent focused laser beams two umbilic defects were created side by side and interconnected with a line defect (the line defects pinned to each umbilic defect were joined in a single defect line). An alternative technique is presented to field-induce promising photonic motives (microlenses, resonators, line defects) in a liquid crystalline, hybridized birefringent film on a microscopic scale by using a low-power laser (opposed to the high power necessary to induce optical Kerr responses in a neat LC).
机译:光诱导的折射率和图案形成的调制是期望通过暴露于光产生复杂的光子结构。在这里,我们表明,通过暴露于A掺杂型锂铌酸锂表面的向列液晶(LC)的杂交薄双折射薄膜中,可以在杂交的薄层膜的杂交薄双折射膜中局部地诱导局部折射率和可重新配置缺陷的局部调节。聚焦激光束。用定制的成像方法研究样品,该方法提供了研究这些光学激发的能力对微观程度的能力。在曝光聚焦激光束后,流畅的LC在基板的表面上膨胀,并且光学产生局部场诱导的缺陷。观察到脐纤维(中央)和线缺陷。现场诱导的脐缺陷的形成在数值模拟中进行了建模。此外,实验研究了线缺陷。有人看出,线缺陷互连了两个中央缺陷的中心(现场诱导的缺陷,其存在于LC层的上表面和下表面处)。另外,看到分离反向倾斜结构域的线路公开(由光生)的不均匀分布引起的)。这些线路披露被固定到中央缺陷。通过曝光具有两个相邻聚焦激光束,两个脐带缺陷并排产生并用线缺陷互连(在单个缺陷线中连接到每个脐带缺陷的线缺陷)。通过使用低功率激光(与诱导光学克尔所需的高功率相对,将液晶杂交的双折射膜(诱导光学克尔所需的高功率相对)在微晶杂交的双折射膜中进行液晶杂交的双折射膜的替代技术在液晶,杂交的双折射膜上的灭活光子动力(微透镜,谐振器,线缺陷)。在整洁的LC中的反应)。

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  • 来源
    《PHYSICAL REVIEW E》 |2017年第2期|022701.1-022701.9|共9页
  • 作者单位

    Department of Chemistry Paderborn University Warburger Strasse 100 33098 Paderborn Germany;

    Department of Chemistry Paderborn University Warburger Strasse 100 33098 Paderborn Germany;

    Taras Shevchenko National University of Kyiv Volodymyrska Street 64 Kyiv 01601 Ukraine;

    Air Force Research Laboratory Materials and Manufacturing Directorate Wright-Patterson Air Force Base Ohio 45433 USA;

    Department of Chemistry Paderborn University Warburger Strasse 100 33098 Paderborn Germany;

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