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首页> 外文期刊>Journal of Infrared, Millimeter and Terahertz Waves >Theoretical Study of Organic Crystal-Based Terahertz-Wave Difference Frequency Generation and Up-Conversion Detection
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Theoretical Study of Organic Crystal-Based Terahertz-Wave Difference Frequency Generation and Up-Conversion Detection

机译:基于有机晶体的太赫兹波差频生成和上转换检测的理论研究

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摘要

Optical pumped quasi-monochromatic and tunable terahertz (THz) wave generation and detection system is investigated theoretically. Calculations are performed on an organic nonlinear medium: 4'-dimethylamino-N-methyl-4-stilbazolium tosylate (DAST), due to the superior properties (large dynamic range and extremely wide tunability). The behavior of pulses during the nonlinear interaction is characterized. Previous experimental results are well explained. Our theoretical model provides an approach to improve the performance of the coherent THz system from two aspects. For the source part, an optimal crystal thickness that maximizes the THz output is obtained. For the detector part, a linear conversion relation (used for calibration) and the parameter dependence of responsivity are provided. It was predicted that a dynamic range of ten orders could be achieved with the DAST-based THz system. The presented model can also be applied to guide the design of THz systems with other nonlinear mediums in collinear phase-matching geometry.
机译:从理论上调查光学泵浦准单色和可调太赫兹(THz)波产生和检测系统。在有机非线性培养基上进行计算:4'-二甲基氨基-N-甲基-4-硫唑鎓甲苯磺酸铵(DAST),由于优异的性质(具有大动态范围和极宽的可调性)。在非线性相互作用期间的脉冲的行为特征。以前的实验结果得到了很好的解释。我们的理论模型提供了一种从两个方面提高相干THZ系统的性能的方法。对于源部件,获得最大化THz输出的最佳晶体厚度。对于检测器部件,提供了线性转换关系(用于校准)和响应度的参数依赖性。预测,通过基于DATS的THz系统可以实现10个订单的动态范围。所提出的模型也可以应用于引导THZ系统的设计与相结相匹配几何形状中的其他非线性介质。

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