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Electrically Tunable 2-D Organic Photonic Crystal Lasers

机译:电可调二维有机光子晶体激光器

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摘要

Holographic polymerization of liquid crystal containing photopolymerizable resins enables one-step, rapid formation of multi-phase structures that exhibit partial photonic band gaps. These holographic polymer dispersed liquid crystals (H-PDLCs) provide a versatile platform for diffractive optical elements because the structures are not limited by multi-phase equilibrium but are controlled by the interference of multiple lasers at discrete angles. Incorporation of laser dyes into H-PDLCs form 1-D and 2-D optically pumped distributed feedback lasers. Linewidths as narrow as 1.8nm are observed with laser thresholds below 1 mJ/cm2 in 2-D columnar structures compared to 9nm and 25 mJ/cm2 exhibited by 1-D H-PDLC Bragg stack lasers. In the 2-D lattices the energy of the laser action can be tuned within the gain spectrum of the lasing medium by an applied effectric field.
机译:含液晶的可光聚合树脂的全息聚合可一步一步快速形成具有部分光子带隙的多相结构。这些全息聚合物分散的液晶(H-PDLC)为衍射光学元件提供了通用的平台,因为结构不受多相平衡的限制,而是受多个激光在离散角度的干涉所控制。将激光染料掺入H-PDLC中,形成一维和二维光学泵浦分布式反馈激光器。在2-D柱状结构中,激光阈值低于1 mJ / cm2时,观察到的线宽窄至1.8nm,而一维H-PDLC布拉格堆栈激光器显示的线宽为9nm和25 mJ / cm2。在二维晶格中,可以通过施加的效应场在激光介质的增益谱内调整激光作用的能量。

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