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Microseconds–Nanoseconds All-Optical Switching of Visible-Near Infrared (0.5 μm–1.55 μm) Lasers with Dye-Doped Nematic Liquid Crystals

机译:掺染料向列液晶的近可见光(0.5 μm–1.55μm)激光器的微秒至纳秒全光切换

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摘要

Laser induced disorder is an efficient and very fast mechanism to induce changes in the birefringence of nematic liquid crystals, which in turn enable many nonlinear optical processes. Using a 90-degrees twist alignment nematic liquid crystal doped with suitable dye to impart the required photonic absorption and order parameter modulation, we have demonstrated ultrafast all-optical shuttle operation for lasersspanning the visible to near-infrared spectral region (532 μm; 488μm; 750μ m; 1060 μm; 1550μm). With increasing intensity, the on-time of the switch decreases from microseconds to the nanoseconds regime, in such a manner that the transmitted light energy=intensity is clamped to below the eye- or sensor-safe levels.
机译:激光诱发的无序是引起向列型液晶双折射变化的有效且非常快速的机制,这又使许多非线性光学过程成为可能。使用掺有合适染料的90度扭转取向向列液晶,以提供所需的光子吸收和阶数参数调制,我们证明了超快全光穿梭操作适用于跨越可见光到近红外光谱区域(532μm;488μm; 5。 750μm;1060μm;1550μm)。随着强度的增加,开关的接通时间从微秒减少到纳秒范围,其方式是将透射光能量=强度限制在人眼或传感器安全的水平以下。

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