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Tunable Liquid Crystal Laser Using Distributed Feedback Cavity Fabricated by Nanoimprint Lithography

机译:纳米压印光刻技术利用分布反馈腔的可调谐液晶激光器

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摘要

Electrical tuning of laser wavelength is demonstrated using a liquid-crystal/polymer grating fabricated by nanoimprint lithography. Laser emission occurs at a wavelength near 700 nm, which corresponds to the first order of a 200 nm period grating. With increasing applied voltage, the lasing spectrum begins to shift to shorter wavelengths at 10 V, and then a 10nm shift is achieved with an applied voltage of 30 V. This is due to the refractive index change of the liquid crystal in the trench of the polymer grating by field-induced molecular reorientation.
机译:使用通过纳米压印光刻技术制造的液晶/聚合物光栅证明了激光波长的电调谐。激光发射发生在接近700 nm的波长处,该波长对应于200 nm周期光栅的第一阶。随着施加电压的增加,激光光谱在10 V处开始向较短的波长偏移,然后在施加30 V的电压时发生10nm的偏移。这是由于液晶在沟槽中的折射率变化所致。聚合物光栅通过场致分子重新定向。

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