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Laser Action Based on Electrically Controllable Defect Mode in One-Dimensional Photonic Crystal Containing Conducting Polymer and Liquid Crystal Defect Layers

机译:包含导电聚合物和液晶缺陷层的一维光子晶体中基于电可控缺陷模式的激光作用

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摘要

Electrical tuning of the wavelength of a defect mode lasing in a one-dimensional photonic crystal has been demonstrated using a conducting polymer as an active emission layer and a nematic liquid crystal as an electrically tunable defect layer in the periodic structure. Lasing wavelength is widely tufted upon applying the electric field, which follows a defect mode shift due to the refractive index change in the nematic liquid crystal defect layer caused by field-induced realignment of the liquid crystal molecules.
机译:已经在周期性结构中使用导电聚合物作为有源发射层和向列液晶作为电可调缺陷层,已经证明了在一维光子晶体中缺陷模式激光的波长的电调谐。施加电场时,激光波长被簇集,由于由液晶分子的场诱导的重新排列引起的向列型液晶缺陷层中的折射率变化,导致缺陷模式偏移。

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