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Sellmeier coefficients for the birefringence and refractive indices of ZnGeP2 nonlinear crystal at different temperatures

机译:ZnGeP2非线性晶体在不同温度下的双折射和折射率的Sellmeier系数

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摘要

Birefringence (Bf), refractive indices, and their temperature derivatives (dB(f)/dT) determine the temperature characteristics of nonlinear-optical laser devices. The birefringences at different temperatures are analyzed critically by use of a new physically meaningful Sellmeier equation for what is to the author's knowledge the first time the birefringences at different operating temperature from 14 to 500 K and wavelength for ZnGeP2 nonlinear crystal have been found. This equation is based on the average electronic absorption gap in the UV region and the lattice absorption gap at the IR region. In this model the fitting accuracy is better than the experimental accuracy of +/-0.0001 at different temperatures. The refractive indices are estimated at different temperatures from the room-temperature values, the thermooptic coefficients, and the smoothed values of birefringence. The Sellmeier coefficients for refractive indices that are used to characterize the currently available nonlinear-optical devices satisfactorily are then evaluated. These optical constants are essential in characterizing the parametric short-pulse generation in the mid-IR region. (C) 1998 Optical Society of America. [References: 29]
机译:双折射(Bf),折射率及其温度导数(dB(f)/ dT)决定了非线性光学激光器的温度特性。通过使用新的对物理有意义的Sellmeier方程,对不同温度下的双折射进行了严格的分析,这是作者所知,这是首次发现在14至500 K的不同工作温度和ZnGeP2非线性晶体的波长下的双折射。该方程式基于紫外线区域的平均电子吸收间隙和红外线区域的晶格吸收间隙。在该模型中,拟合精度优于在不同温度下的实验精度+/- 0.0001。根据室温值,热光系数和双折射的平滑值,可以在不同温度下估算折射率。然后评估用于令人满意地表征当前可用的非线性光学设备的折射率的Sellmeier系数。这些光学常数对于表征中红外区域中的参数短脉冲产生至关重要。 (C)1998年美国眼镜学会。 [参考:29]

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    《Applied optics》 |1998年第7期|共8页
  • 作者

    Ghosh G.;

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