Generation of terahertz waves based on nonlinear frequency conversion with double rapid adiabatic passage technique

HAITAO JIA, ZHEN CHEN, WEIXIAN YU, Changshui Chen
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Abstract

Abstract In this paper, a nonlinear optical cascaded difference frequency generation model based on double rapid adiabatic passage technique is established, and a theoretical scheme for generating THz waves based on the above model is proposed. In this model, when the incident signal laser interacts with a pump laser, the signal laser can be completely converted into the output laser by special processing of the coupling wave equation and making reasonable assumptions. Numerical simulation results show that THz waves with a centre frequency of 260 GHz can be obtained. The maximum quantum conversion efficiency of the signal laser to THz waves is about 43.4%. Under the premise of keeping the wavelength of the pump laser unchanged, the tunable THz waves of 0.26–2.94 THz can be obtained when tuning the wavelength of the signal laser to change in the range of 1.054–1.064 μ m. Compared with the scheme using stimulated Raman adiabatic passage technique, the scheme can still generate terahertz waves during the application of a pump laser to two simultaneous difference frequency generation processes, and the intensity of the pump laser can be reduced from Gigawatt level to Megawatt level. This scheme is robust to the temperature variation and provides a new method for generating terahertz wave band for high-speed wireless transmission.
基于非线性变频双快速绝热通道技术的太赫兹波的产生
本文建立了基于双快速绝热通道技术的非线性光学级联差频产生模型,并提出了基于该模型产生太赫兹波的理论方案。在该模型中,当入射信号激光与泵浦激光相互作用时,通过对耦合波动方程进行特殊处理并做出合理的假设,可以将信号激光完全转换为输出激光。数值模拟结果表明,可以得到中心频率为260 GHz的太赫兹波。信号激光到太赫兹波的最大量子转换效率约为43.4%。在保持泵浦激光器波长不变的前提下,将信号激光器的波长在1.054 ~ 1.064 μ m范围内变化,可获得0.26 ~ 2.94太赫兹的可调谐太赫兹波。与采用受激拉曼绝热通道技术的方案相比,该方案在泵浦激光器同时进行两个差频产生过程时仍能产生太赫兹波。泵浦激光的强度可以从千兆瓦级降低到兆瓦级。该方案对温度变化具有较强的鲁棒性,为高速无线传输产生太赫兹波段提供了一种新的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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