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Low-voltage-modulated laser based on dye-doped polymer stabilized cholesteric liquid crystal

机译:基于染料掺杂的聚合物稳定的胆甾型液晶的低压调制激光器

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An electrically-modulated laser was fabricated based on cholesteric liquid crystal photonic band gap. To lower the modulation voltage, the nematic liquid crystals with high dielectric constant was selected, and thus, the emission energy can be modulated with a voltage of less than 10 V. Polymer stabilization was carried out to obtain a stable and switchable helical liquid crystal system. It is noteworthy that visible light initiation system was adopted to prevent the deformation of photonic band gap. The monomer concentration effects on lasing performances were studied and discussed. The results indicate that the laser emission threshold is decreased and the response time is shortened with the increasing of monomer, while the hysteresis may be enhanced. This study provides some new insights into the fabrication, materials improvements and performances of dye-doped liquid crystal laser, and such electrically modulated laser will be a prospective candidate in the laser displays, micro-light-source or the other optical systems.
机译:基于胆甾型液晶光子带隙制备了电调制激光器。为了降低调制电压,选择了具有高介电常数的向列型液晶,因此可以以小于10V的电压来调制发射能量。进行聚合物稳定化以获得稳定且可切换的螺旋液晶系统。 。值得注意的是,采用可见光引发系统来防止光子带隙的变形。研究和讨论了单体浓度对激光性能的影响。结果表明,随着单体的增加,激光发射阈值降低,响应时间缩短,而滞后现象可能得到增强。这项研究为掺杂染料的液晶激光器的制造,材料改进和性能提供了一些新见解,而这种电调制激光器将成为激光显示器,微光源或其他光学系统中的潜在候选者。

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