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Characteristics of highly sensitive terahertz wave detector based on lithium niobate

机译:基于铌酸锂的高灵敏太赫兹波检测器的特性

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The characteristics of a highly sensitive terahertz wave detector based on lithium niobate have been investigated using a steady-state theory. The contributions of the low-frequency modes to the dielectric constant of lithium niobate are considered. The intrinsic factors of the LN detector limit its high frequency response to about 4 THz. Temperature dependence of the detector from room temperature to 250°C was also studied. The main factors associated with the temperature variations of the sensitivity of the detector are thermal expansion, the nonlinear coefficient and the refractive index of the crystal. The nonlinear coefficient dominates the temperature dependence of the sensitivity of the detector, while the impact of the refractive indices of the near-infrared lights on the temperature variation of the sensitivity of the detector is negligible. This study provides a useful guide and a theoretical basis for the further improvement of the detection systems.
机译:利用稳态理论研究了基于铌酸锂的高灵敏太赫兹波检测器的特性。考虑了低频模式对铌酸锂介电常数的贡献。 LN检测器的内在因素将其高频响应限制在大约4 THz。还研究了检测器从室温到250°C的温度依赖性。与检测器灵敏度的温度变化有关的主要因素是热膨胀,非线性系数和晶体的折射率。非线性系数决定了探测器灵敏度的温度依赖性,而近红外光的折射率对探测器灵敏度温度变化的影响可以忽略不计。该研究为进一步完善检测系统提供了有益的指导和理论依据。

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