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Linear and nonlinear temperature-dependent transmission/absorption characteristics of cadmium telluride crystal for terahertz generation

机译:太赫兹生成碲化镉晶体晶体晶体的线性和非线性温度依赖性传播/吸收特性

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This paper reports on the temperature-dependent investigation of linear and nonlinear transmission/absorption characteristics of CdTe crystal in the 300-408 K range using 780-970 nm tunable wavelengths of 140 fs pulses obtained from a Ti:Sapphire laser at 80 MHz repetition rate. The same pulses were also used for terahertz generation. The linear transmission/absorption properties were measured using a specially improvised temperature-tuned spectrophotometer in the 500-1500 nm wavelength range. The linear absorption of 750 nm wavelength gradually increases with respect to a rise in the temperature, and transmission becomes zero at 408 K. Nonlinear absorption induced by femtosecond pulses shows a sudden drop of 18% in transmission above the 800 nm range, due to electron-phonon interaction, which affects the strength of the terahertz signal. It is also responsible for change in the temperature along with the linear shift in the refractive index of the crystal. (C) 2020 Optical Society of America
机译:本文报告了300-408K范围内CdTe晶体的线性和非线性透射特性的温度依赖性研究,使用从Ti:蓝宝石激光处获得80 MHz重复率的380 FS脉冲的300-40nm可调波长。同样的脉冲也用于太赫兹一代。使用500-1500nm波长范围内的特殊简易的温度调谐分光光度计测量线性透射性/吸收性能。 750nm波长的线性吸收相对于温度的升高逐渐增加,并且在408k的408k处变速器变为零。由飞秒脉冲引起的非线性吸收显示出由于电子的透射率在800nm范围内的透射率下降18%。 - 对照相互作用,影响太赫兹信号的强度。它还负责温度的变化以及晶体折射率的线性偏移。 (c)2020美国光学学会

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    《Applied optics》 |2020年第11期|共5页
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