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Design and Analysis of High Power, Broadband Terahertz Vacuum Photomixer Device

机译:高功率,宽带太赫兹真空光学混合装置的设计与分析

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Compact, cost-effective, high-power and broadband radiation sources are required for terahertz (THz) spectroscopy and communication applications. In this paper, we present a new terahertz photomixer using a planar antenna integrated vacuum photodiode. The photocathode of the photodiode can be excited to emit high-density THz electron beams corresponding to the illuminating laser beat frequency. The electron beams can be accelerated and transported through a micron scale vacuum channel to feed an integrated broadband antenna generating continuous THz radiation into free space. The vacuum channel enables high current density operation and carrier mobility, which makes the photomixer capable of radiating high output power of milliwatt level within 0.1-2.0 THz. The latest development in the schematic design of the vacuum photomixer, design and analysis of the vacuum transistor and the broadband antenna is reviewed and discussed. Further research works will be focused on the analytical framework of the photomixer that involves photocathode modeling, charged sheets transportation in the micron scale vacuum channel, and impedance match.
机译:Terahertz(THz)光谱和通信应用需要紧凑,经济效益,高功率和宽带辐射源。在本文中,我们使用平面天线集成真空光电二极管介绍了一种新的太赫兹光学器。光电二极管的光电阴极可以激发以发射与照明激光频率相对应的高密度THz电子束。电子束可以通过微米级真空通道加速和传输,以将连续的THz辐射产生连续的宽带天线进入自由空间。真空通道使得能够实现高电流密度操作和载流子移动,这使得光学器能够在0.1-2.0至0THz内辐射毫瓦水平的高输出功率。综述并讨论了真空晶体管设计和分析的真空光学器,设计和分析的最新开发和宽带天线。进一步的研究作品将集中在涉及光电阴极建模的光学器的分析框架上,在微米级真空通道中的带电床单运输和阻抗匹配。

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