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基于异步泵浦氧化石墨烯集成TOPAS中四波混频的再生太赫兹波参量放大器。

Regenerative terahertz wave parametric amplifier based on four-wave mixing in asynchronously pumped graphene oxide integrated TOPAS.

作者信息

Amini Tahereh, Jahangiri Fazel

出版信息

Opt Express. 2021 Oct 11;29(21):33053-33066. doi: 10.1364/OE.430297.

Abstract

A widely tunable regenerative terahertz parametric amplifier is proposed based on degenerate four-wave mixing in an asynchronously pumped highly nonlinear medium. To enhance the Kerr nonlinearity, a hybrid structure of cyclic olefin co/polymer (COC/P) TOPAS integrated by a graphene oxide film is utilized as the gain medium and embedded into a cavity. A low-power terahertz seed wave is injected inside the cavity and sequentially pumped by four asynchronous coupled beams of identical powers. Our results reveal that the output power, the tuning frequency range and the power conversion efficiency of terahertz waves could be considerably improved in the proposed design. Terahertz waves with maximum peak power of 641 W, the accumulated conversion efficiency of 3.8% and amplification gain of 320.5 are obtained at a frequency of 9.61 THz, which could be tuned over a range of 1.17 - 19.736 THz.

摘要

基于在异步泵浦的高度非线性介质中的简并四波混频,提出了一种广泛可调谐的太赫兹参量再生放大器。为了增强克尔非线性,一种由氧化石墨烯薄膜集成的环烯烃共聚物(COC/P)TOPAS混合结构被用作增益介质并嵌入到一个腔中。一个低功率太赫兹种子波被注入到腔内,并由四个相同功率的异步耦合光束依次泵浦。我们的结果表明,在所提出的设计中,太赫兹波的输出功率、调谐频率范围和功率转换效率都可以得到显著提高。在9.61太赫兹的频率下,获得了最大峰值功率为641瓦、累积转换效率为3.8%和放大增益为320.5的太赫兹波,其调谐范围为1.17 - 19.736太赫兹。

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