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Spectral analysis of a THz radiation source based on high-harmonic interaction in a hybrid cavity

机译:混合腔中基于高谐波相互作用的太赫兹辐射源的光谱分析

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We consider a novel concept of a miniature vacuum electronic device (VED), targeting coherent electromagnetic wave generation in the THz range, but not limited to the latter. While in a traditional VED a preformed mono-energetic electron beam is interacting with a slow-wave structure or a resonant cavity, the hybrid cavity under consideration allows for interaction of electron bunches accelerating or oscillating in a Penning trap-like static field configuration integrated with a resonant cavity, formed partially by the trap's electrodes and partially by a dielectric Bragg structure. As a first step, we analyze the energy exchange spectrum between the oscillating bunches and the cavity eigenmodes. While the dielectric breakdown limits the maximal frequency of bunches' oscillations to an order of 0.1 THz, a significant high-harmonic interaction with cavity modes above the fundamental is possible for a large, comparable with the cavity dimensions, oscillating dipole. Proper design of the cavity may allow for interaction of a selected high harmonic of bunch oscillations with a single mode of the cavity, providing conditions for an energy-efficient generation of a virtually monochromatic THz wave.
机译:我们考虑了微型真空电子设备(VED)的新颖概念,其目标是在THz范围内产生相干电磁波,但不限于后者。在传统的VED中,预制的单能电子束正在与慢波结构或谐振腔相互作用,而所考虑的混合腔允许电子束的相互作用在加速或振荡的Penning阱状静态场结构中与谐振腔,部分由陷阱的电极和部分由介电布拉格结构形成。第一步,我们分析振荡束与腔本征模之间的能量交换谱。尽管介电击穿将束的最大振荡频率限制在0.1 THz的数量级,但对于较大的,与腔尺寸相当的振荡偶极子,与基波以上的腔模可能发生明显的高谐波相互作用。腔的正确设计可允许束振荡的选定高次谐波与腔的单模相互作用,从而为实际产生单色THz波的节能产生提供了条件。

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