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THz white light cavity with nonlinear dispersion in graphene

机译:Thz白光腔,具有石墨烯中的非线性分散体

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摘要

A white light cavity (WLC) scheme is proposed to achieve broadband response in the terahertz (THz) region by enhanced nonlinear dispersion in a magnetized graphene system. In the weak probe field limit, the cavity linewidth is narrowed due to electromagnetically induced transparency, and then it becomes nearly as broad as the empty-cavity linewidth under the condition of Autler-Towns splitting. It is interesting to find that the cavity linewidth can be further broadened by enhanced nonlinear dispersion. The simulation result shows that the response range of the cavity is from 6.273 THz to 6.308 THz under the given condition, which is nearly 11 times larger than the emptycavity linewidth. Furthermore, the improvement in cavity transmission and the response of WLC at different frequencies are investigated. (C) 2020 Optical Society of America
机译:提出了一种白光腔(WLC)方案,通过磁化石墨烯系统中的增强的非线性分散来实现太赫兹(THz)区域的宽带响应。 在较弱的探测场限制中,由于电磁诱导的透明度,腔线宽变窄,然后在自动群城镇分裂的条件下,它变得几乎与空洞线宽一样广泛。 有趣的是发现通过增强的非线性分散可以进一步扩大腔线宽。 仿真结果表明,腔的响应范围在给定条件下为6.273 THz至6.308 THz,该条件近11倍,比空洞宽度线宽大。 此外,研究了腔体传输的改善和WLC在不同频率下的响应。 (c)2020美国光学学会

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    《Applied optics》 |2020年第13期|共6页
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