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Tunable compression of THz chirped pulses using a helical graphene ribbon-loaded hollow-core waveguide

机译:使用螺旋石墨烯带状的空心芯波导调谐压缩THz啁啾脉冲

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摘要

Pulse shaping is important for communications, spectroscopy, and other applications that require high peak power and pulsed operation, such as radar systems. Unfortunately, pulse shaping remains largely elusive for terahertz (THz) frequencies. To address this void, a comprehensive study on the dispersion tunability properties of THz chirped pulses traveling through a dielectric-lined hollow-core waveguide loaded with a helical graphene ribbon is presented. It is demonstrated that there is an optimal compression waveguide length over which THz chirped pulses reach the maximum compression. The optimal length is dependent on the chirp pulse duration. It is shown that by applying an electrostatic controlling gate voltage (V-g) of 0 and 30 V on the helical graphene ribbon, the temporal input pulses of width 8 and 12 ps, propagating through two different lengths, can be tuned by 5.9% and 8%, respectively, in the frequency range of 2.15-2.28 THz. (C) 2020 Optical Society of America
机译:脉冲整形对于需要高峰功率和脉冲操作的通信,光谱学和其他应用是重要的,例如雷达系统。 遗憾的是,脉冲整形仍然很大程度上难以实现太赫兹(THz)频率。 为了解决该空隙,呈现了通过装载有螺旋石墨烯带的介电衬里空心芯波导行进的THz啁啾脉冲的色散可调性特性的综合研究。 据证明存在最佳压缩波导长度,在该波动长度,THz啁啾脉冲达到最大压缩。 最佳长度取决于啁啾脉冲持续时间。 如图所示,通过在螺旋石墨烯带上施加0和30V的静电控制栅极电压(Vg),宽度8和12ps的时间输入脉冲,传播通过两个不同的长度,可以调整5.9%和8 分别在2.15-2.28至thz的频率范围内。 (c)2020美国光学学会

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    《Applied optics》 |2020年第14期|共7页
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