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Characterization of ZnGeP2 for parametric generation with near-infrared femtosecond pumping

机译:ZnGeP2的表征,用于近红外飞秒泵浦的参数生成

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Values for the nonlinear refractive index (n(2) approximate to 5.4 X 10(.5) cm(2)/GW) are reported as well as the two-photon absorption coefficient (beta approximate to 0.25 cm/GW) in ZnGeP02 at wavelengths near half the band edge of this semiconductor nonlinear optical crystal. The Z-scan measurements were performed with a mode-locked femtosecond Cr:forsterite laser at 1.26 mum and 83 MHz, and the nonlinear transmission measurements were accomplished by a near infrared traveling wave optical parametric generator providing powerful femtosecond pulses at 1 kHz. In both cases, ZnGeP2 samples with reduced anomalous absorption were used. The parametric fluorescence in these 2-mm thin ZnGeP2 samples was studied with near infrared pumping and the optimum pump wavelength established lies between 1.9 and 2.1 mum. The femtosecond signal and idler pulses generated could be tuned between 2.5 and 12 mum at a maximum single pass internal conversion efficiency of 2.5%. [References: 20]
机译:报告了非线性折射率的值(n(2)大约为5.4 X 10(.5)cm(2)/ GW)以及ZnGePO2中的双光子吸收系数(beta大约为0.25 cm / GW)波长接近该半导体非线性光学晶体的带边缘的一半。 Z扫描测量是使用锁模飞秒Cr:镁橄榄石激光器在1.26 mum和83 MHz频率下进行的,非线性透射率测量是通过近红外行波光学参量发生器完成的,该发生器在1 kHz时提供了强大的飞秒脉冲。在这两种情况下,均使用异常吸收降低的ZnGeP2样品。使用近红外泵浦研究了这些2毫米薄ZnGeP2样品中的参数荧光,确定的最佳泵浦波长在1.9和2.1微米之间。飞秒信号和产生的惰轮脉冲可以在2.5至12微米之间调整,最大单程内部转换效率为2.5%。 [参考:20]

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