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Theoretical study and 2D computational modeling of middle-infrared radiation generation in the field of few-cycle laser pulse propagating in GaSe slab waveguide

机译:GaSe平板波导中多周期激光脉冲传播中红外辐射产生的理论研究与二维计算模型

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摘要

We have performed the theoretical study and 2D finite-difference time-domain-based computational modeling of middle-infrared radiation generation in the field of few-cycle laser pulse propagating in GaSe slab waveguide. The interaction of linearly polarized pulse with 1.98 um central wavelength, 22.44 fs duration, and electric field amplitudes 100 MV/m, propagated along the [010] crystalline direction of GaSe crystal with polarization aligned along [100] is considered. The crystal length chosen is equal to 21.78 um. Symmetric GaSe slab waveguides with 6.336 um, 7.92 um, 11.88 um, and 15.84 um thicknesses excited by the Gaussian pump beams with 3.96 um, 5.94 um, 8.91 um, and 11.88 um diameters, respectively, are considered. The 2D distributions of the electric fields are obtained by numerical integration of Maxwell's equations' systems. The spatially spectral normalized distributions of the electric fields are obtained. The efficiency of generated infrared (IR) radiation vs. spatial transverse coordinate is obtained.
机译:在GaSe平板波导中少周期激光脉冲传播领域,我们进行了中红外辐射产生的理论研究和基于2D时域有限差分的计算模型。考虑了沿GaSe晶体的[010]结晶方向传播且极化沿[100]排列的线偏振脉冲与中心波长1.98 um,持续时间22.44 fs和电场幅度100 MV / m的相互作用。选择的晶体长度等于21.78 um。考虑了分别由直径分别为3.96 um,5.94 um,8.91 um和11.88 um的高斯泵浦光束激发的厚度分别为6.336 um,7.92 um,11.88 um和15.84 um的对称GaSe平板波导。电场的二维分布是通过麦克斯韦方程组的数值积分获得的。获得电场的空间光谱归一化分布。获得了生成的红外(IR)辐射相对于空间横向坐标的效率。

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