Twisted terahertz excitation using pre-bunched relativistic electron beam in magnetic wiggler

Himani Juneja, A. Panwar, Prashant Chauhan
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Abstract

This work presents a theoretical analysis of the generation of twisted terahertz (THz) radiation using laser-bunched relativistic electron beams in a magnetic wiggler. By employing a laser-bunched relativistic electron beam, which introduces a transverse modulation to the electron beam density, and a magnetic wiggler, which induces a transverse deflection to the electron trajectories, the generation of twisted THz radiation is achieved. The interaction between the modulated electron beam and the magnetic field leads to the emission of THz photons with a twisted phase structure. The findings of this study provide valuable insights into the generation and manipulation of twisted THz radiation contributing to the advancement of THz technology and its diverse applications.
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利用磁摇摆器中的预束相对电子束进行扭曲太赫兹激励
这项研究对在磁摇摆器中使用激光束束相对论电子束产生扭曲太赫兹(THz)辐射进行了理论分析。通过使用激光束管相对论电子束(可对电子束密度进行横向调制)和磁摇摆器(可对电子轨迹产生横向偏转),可以产生扭曲太赫兹辐射。调制电子束与磁场之间的相互作用导致了具有扭曲相位结构的太赫兹光子的发射。这项研究的发现为扭曲太赫兹辐射的产生和操纵提供了宝贵的见解,有助于太赫兹技术的进步及其多样化应用。
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