首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Experimental and computational studies of novel coaxial 2D Bragg structures for a high-power FEM
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Experimental and computational studies of novel coaxial 2D Bragg structures for a high-power FEM

机译:用于高功率有限元的新型同轴二维布拉格结构的实验和计算研究

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Two-dimensional (2D) coaxial Bragg structures have been suggested for use in high-power Free Electron Masers (FEM) to synchronize radiation from different parts of an oversized annular electron beam. In this paper, the simulations of field evolution using the three-dimensional code MAGIC are carried out and results are presented. An investigation of 2D Bragg structures obtained by corrugating the inner surface of the outer conductor of a coaxial waveguide or by lining the surface of a smooth waveguide with a dielectric material, which has a bi-periodic permittivity, has been conducted. Experimental studies of 2D Bragg structures were also undertaken and the good agreement between experimental measurements and theoretical predictions is demonstrated. Measurements of a 7 cm diameter annular electron beam produced by a high-current accelerator to be used to drive the FEM are presented and the experimental set-up discussed.
机译:有人建议将二维(2D)同轴布拉格结构用于大功率自由电子Masers(FEM)中,以同步来自超大环形电子束不同部分的辐射。在本文中,使用三维代码MAGIC对场演化进行了仿真,并给出了结果。已经进行了对二维布拉格结构的研究,该二维布拉格结构是通过使同轴波导管的外导体的内表面成波纹状或用具有双周期介电常数的电介质材料衬里来形成光滑波导管的表面。还进行了二维布拉格结构的实验研究,并证明了实验测量结果与理论预测之间的良好一致性。提出了由高电流加速器产生的用于驱动FEM的直径为7 cm的环形电子束的测量,并讨论了实验装置。

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