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Coherent and Tunable Terahertz Radiation from Graphene Surface Plasmon Polarirons Excited by Cyclotron Electron Beam

机译:回旋加速器电子束激发的石墨烯表面等离激元极化铁的相干和可调太赫兹辐射

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摘要

Terahertz (THz) radiation can revolutionize modern science and technology. To this date, it remains big challenges to develop intense, coherent and tunable THz radiation sources that can cover the whole THz frequency region either by means of only electronics (both vacuum electronics and semiconductor electronics) or of only photonics (lasers, for example, quantum cascade laser). Here we present a mechanism which can overcome these difficulties in THz radiation generation. Due to the natural periodicity of 2π of both the circular cylindrical graphene structure and cyclotron electron beam (CEB), the surface plasmon polaritions (SPPs) dispersion can cross the light line of dielectric, making transformation of SPPs into radiation immediately possible. The dual natural periodicity also brings significant excellences to the excitation and the transformation. The fundamental and hybrid SPPs modes can be excited and transformed into radiation. The excited SPPs propagate along the cyclotron trajectory together with the beam and gain energy from the beam continuously. The radiation density is enhanced over 300 times, up to 105 W/cm2. The radiation frequency can be widely tuned by adjusting the beam energy or chemical potential. This mechanism opens a way for developing desired THz radiation sources to cover the whole THz frequency regime.
机译:太赫兹(THz)辐射可以彻底改变现代科学技术。迄今为止,开发强大,相干且可调的THz辐射源仍然是巨大的挑战,这些辐射源只能通过电子设备(包括真空电子设备和半导体电子设备)或仅通过光子技术(例如激光,量子级联激光器)。在这里,我们提出一种可以克服太赫兹辐射产生中的这些困难的机制。由于圆柱形石墨烯结构和回旋加速器电子束(CEB)的自然周期均为2π,因此表面等离激元极化(SPPs)色散可以穿过电介质的光线,使SPP立即转换为辐射成为可能。双重自然周期性也为激发和转化带来了卓越的成就。基本和混合SPP模式可以被激发并转化为辐射。激发的SPP与回旋束一起沿着回旋加速器轨道传播,并从回旋束中连续获取能量。辐射密度提高300倍以上,达到10 5 W / cm 2 。辐射频率可以通过调节电子束能量或化学势来广泛调节。该机制为开发所需的太赫兹辐射源以覆盖整个太赫兹频率范围开辟了道路。

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