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High-power THz Wave Generation through Coherent Cherenkov Radiation based on a Plasma Dielectric Wake-field Accelerator using Relativistic Annular Electron Beam

机译:基于相对论环形电子束的等离子体介电尾波加速器通过相干切伦科夫辐射产生大功率太赫兹波

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摘要

Generally, as the operating frequency of the electromagnetic wave increases, the maximum output becomes smaller and the wavelength of the wave becomes smaller, so that the size of the circuit cannot but be reduced. Particularly, fabrication of a circuit with a high-power terahertz (THz) wave frequency band of kW or more is limited due to the problem of circuit size on the order of μm to mm. In order to overcome these limitations, this paper proposes a source design technique of 0.1THz-0.3GW levels with a cylindrical shape with a diameter of about 2.4cm. Modeling and computational simulation were performed to optimize the design of high power electromagnetic sources based on the Cherenkov radiation generation technology using the principle of plasma wake-field acceleration with ponderomotive force and artificial dielectrics. An effective design guideline has been proposed to facilitate the fabrication of large-power terahertz wave vacuum devices of large diameter that are less restricted in circuit size through objective verification.
机译:通常,随着电磁波的工作频率的增加,最大输出变小并且波的波长变小,从而不得不减小电路的尺寸。特别地,由于电路尺寸在μm至mm量级的问题,限制了具有kW或更高的高功率太赫兹(THz)波段的电路的制造。为了克服这些限制,本文提出了一种直径为2.4cm的圆柱形的0.1THz-0.3GW水平的源设计技术。进行了建模和计算仿真,以基于Cherenkov辐射产生技术的高功率电磁源的设计为基础,并利用了具有质动力和人工电介质的等离子体尾波场加速原理。已经提出了一种有效的设计指南,以方便制造大直径的大功率太赫兹波真空器件,该器件通过客观验证就可以减少电路尺寸的限制。

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  • 会议地点 Busan(KR)
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    Korea Institute of Radiological and Medical Sciences (KIRAMS), Seoul, 01812, South Korea;

    Institute for Basic Science Center for Axion and Precision Physics Research, Daejeon, 34141, South Korea;

    Seoul-Teracom, Inc., Gyeonggi-do Suwon, 16229, South Korea;

    Department of Physics and Astronomy, Seoul National University, Center for THz-driven Biomedical Systems, Seoul, 08826, South Korea;

    Department of Physics and Astronomy, Seoul National University, Center for THz-driven Biomedical Systems, Seoul, 08826, South Korea;

    Korea Institute of Radiological and Medical Sciences (KIRAMS), Seoul, 01812, South Korea;

    Korea Institute of Radiological and Medical Sciences (KIRAMS), Seoul, 01812, South Korea;

    Korea Institute of Radiological and Medical Sciences (KIRAMS), Seoul, 01812, South Korea;

    Korea Institute of Radiological and Medical Sciences (KIRAMS), Seoul, 01812, South Korea;

    Korea Institute of Radiological and Medical Sciences (KIRAMS), Seoul, 01812, South Korea;

    Seoul-Teracom, Inc., Gyeonggi-do Suwon, 16229, South Korea;

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