首页> 外文会议>Conference on Terahertz Photonics; 20071112-14; Beijing(CN) >Theoretical analysis of terahertz wave parametric source based on intersecting cavity
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Theoretical analysis of terahertz wave parametric source based on intersecting cavity

机译:基于相交腔的太赫兹波参数源的理论分析

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The THz spectral region, lying between the microwave and the far infrared, is currently attracting widespread interest in relation to potential applications that span many areas of pure and applied science and technology such as in security, human health and communications. The development of practical source of THz radiation is crucial to the realization of these applications. Using optical parametric oscillator with intersecting pump results in compact, low threshold THz radiation source. Lithium niobate is one of the most suitable materials for generating THz waves efficiently because of its large nonlinear coefficient and its transparency over a wide wavelength range. In this communication we theoretically analyze generation of tunable terahertz (THz) radiation which is based on optical parametric process, in particular using a non-collinear quasi-phase matched geometry in the nonlinear crystal periodically poled lithium niobate (PPLN), and where wide and continuous tuning is obtained by changing the poled period and the angle between the resonated idler wave and the pump wave. Also the THz wave should fulfill the energy and momentum conservation laws. Furthermore, the bandwidth of the wavelength and the frequency of THz wave are analyzed. The optimal THz wave parametric oscillator for efficient coupling output power can be designed according to our theoretical results
机译:介于微波和远红外之间的太赫兹光谱区,目前正在涉及涉及潜在应用的广泛兴趣,这些应用跨越了纯技术和应用科学与技术的许多领域,例如安全,人类健康和通信。实际太赫兹辐射源的开发对于实现这些应用至关重要。将光学参量振荡器与相交泵一起使用会产生紧凑的低阈值THz辐射源。铌酸锂由于其大的非线性系数和在很宽的波长范围内的透明性,是最有效地产生THz波的最合适的材料之一。在此通信中,我们从理论上分析了基于光学参量过程的可调谐太赫兹(THz)辐射的产生,特别是在非线性晶体周期性极化铌酸锂(PPLN)中使用非共线准相位匹配的几何结构,以及通过改变极化周期和共振惰轮波与泵浦波之间的角度,可以获得连续调谐。太赫兹波也应满足能量和动量守恒定律。此外,分析了波长的带宽和太赫兹波的频率。可以根据我们的理论结果设计用于有效耦合输出功率的最佳THz波参量振荡器

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