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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Micro-bunching for generating tunable narrow-band THz radiation at the FAST photoinjector
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Micro-bunching for generating tunable narrow-band THz radiation at the FAST photoinjector

机译:在FAST光电注入器处产生可调谐窄带THz辐射的微束

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This paper presents expected THz radiation spectra emitted by micro-bunched electron beams produced using a slit-mask placed within a magnetic chicane in the FAST (Fermilab Accelerator Science and Technology) electron injector at Fermilab. Our purpose is to generate tunable narrow-band THz radiation with a simple scheme in a conventional photo-injector. Using the slit-mask in the chicane, we create a longitudinally micro-bunched beam after the chicane by transversely slicing an energy chirped electron bunch at a location with horizontal dispersion. In this paper, we discuss the theory related to the micro-bunched beam structure, the beam optics, the simulation results of the micro-bunched beam and the bunching factors. Energy radiated at THz frequencies from two sources: coherent transition radiation and from a wiggler is calculated and compared. We also discuss the results of a simple method to observe the micro-bunching on a transverse screen monitor using a skew quadrupole placed in the chicane.
机译:本文介绍了在费米实验室的FAST(Fermilab加速器科学与技术)电子注射器中,使用放置在磁锥内的狭缝掩模产生的微束电子束产生的预期THz辐射光谱。我们的目的是在传统的光电注入器中以简单的方案生成可调谐的窄带THz辐射。通过使用在弯管中的狭缝掩模,我们在弯管后通过在水平分散的位置横向切片能量chi电子束来创建一个纵向微束束。在本文中,我们讨论了与微束光束结构有关的理论,光束光学特性,微束光束的仿真结果以及聚束因子。计算并比较了来自两个源(相干过渡辐射和摆动器)以太赫兹频率辐射的能量。我们还讨论了一种简单的方法的结果,该方法使用放置在斜角上的斜四极杆在横向屏幕监视器上观察微束。

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