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Generation of 0.3 mW high-power broadband terahertz pulses from GaP crystal pumped by negatively chirped femtosecond laser pulses

机译:由负chi飞秒激光脉冲泵浦的GaP晶体产生0.3 mW大功率宽带太赫兹脉冲

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摘要

Based on optical rectification in a 3 mm GaP crystal with a femtosecond photonic crystal fiber amplifier as the pump source, a detailed experimental investigation on the influence of the chirp characteristics of the pump pulses on the THz wave generation efficiency is conducted. It is shown that a higher THz generation efficiency can be achieved using negatively chirped pulses rather than de-chirped pulses. In the chosen geometry, using 21 W pump pulses with a negative chirp of -2.3 × 10~(-3) ps~2, broadband THz radiation with an average power of 0.3 mW is obtained, which is, to the best of our knowledge, the highest value reported so far for high-repetition-rate THz pulses generated by collinear optical rectification. The higher THz generation efficiency by negatively chirped pulses is explained by a pulse-narrowing mechanism in the nonlinear crystal.
机译:基于以飞秒光子晶体光纤放大器为泵浦源的3 mm GaP晶体中的光整流,对泵浦脉冲的the特性对太赫兹波产生效率的影响进行了详细的实验研究。结果表明,使用负chi脉冲而不是去-脉冲可以实现更高的THz产生效率。在选定的几何形状中,使用负W为-2.3×10〜(-3)ps〜2的21 W泵浦脉冲,可获得平均功率为0.3 mW的宽带THz辐射,据我们所知,是共线光学整流所产生的高重复频率THz脉冲迄今报道的最高值。负chi脉冲产生的更高的THz产生效率是由非线性晶体中的脉冲窄化机制解释的。

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