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Wide-Range Position-Tuning Lasers in Cholesteric Liquid Crystal

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【作者】 岱钦李勇吴杰张濛乌日娜彭增辉姚丽双

【Author】 DAI Qin;LI Yong;WU Jie;ZHANG Meng;WU Ri-Na;PENG Zeng-Hui;YAO Li-Shuang;School of Science,Shenyang Ligong University;State Key Laboratory of Applied Optics,Changchun Institute of Optics,Fine Mechanics and Physics,Chinese Academy of Sciences;

【机构】 School of Science,Shenyang Ligong UniversityState Key Laboratory of Applied Optics,Changchun Institute of Optics,Fine Mechanics and Physics,Chinese Academy of Sciences

【摘要】 A wedge liquid crystal(LC) cell is designed and manufactured,and a dye-doping cholesteric LC laser formed by mutual diffusion of the cholesteric LC with different pitches.A laser that is tunable in the 558-624 nm range is obtained under moderate optical pumping,with a tuning range of 66 nm and a laser spectral tuning resolution of 1 nm,so as to achieve the spatial position of a wide range of tunable lasers.The laser threshold varies at different positions in the device,and the lasing thresholds of the dye-doping cholesteric LC cell at 40 and 9 μm are 18 and 25 μJ/pulse,respectively.The density of the photonic states is simulated in the experimental sample,and the result is in good agreement with the photonic band gap in our experiment,which not only explains the low-threshold laser at the band gap edge,but also predicts the experiment.

【Abstract】 A wedge liquid crystal(LC) cell is designed and manufactured,and a dye-doping cholesteric LC laser formed by mutual diffusion of the cholesteric LC with different pitches.A laser that is tunable in the 558-624 nm range is obtained under moderate optical pumping,with a tuning range of 66 nm and a laser spectral tuning resolution of 1 nm,so as to achieve the spatial position of a wide range of tunable lasers.The laser threshold varies at different positions in the device,and the lasing thresholds of the dye-doping cholesteric LC cell at 40 and 9 μm are 18 and 25 μJ/pulse,respectively.The density of the photonic states is simulated in the experimental sample,and the result is in good agreement with the photonic band gap in our experiment,which not only explains the low-threshold laser at the band gap edge,but also predicts the experiment.

【基金】 Supported by the National Natural Science Foundation of China under Grant No 60777011;the Natural Science Foundation of Liaoning Province under Grant No L2010465;Technology Project of Education Department of Liaoning Province under Grant No L2012070
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2013年08期
  • 【分类号】TN248
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