首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >The effects of magnetic fringe fields on beam dynamics in a beam transport line of a terahertz FEL source
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The effects of magnetic fringe fields on beam dynamics in a beam transport line of a terahertz FEL source

机译:太赫兹FEL光源束传输线中的边缘磁场对束动力学的影响

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The transport line used in a terahertz FEL device has to transport electron beam through the entire system efficiently and meet the requirements of the beam parameters at the undulator entrance. Due to space limitations, the size of the magnets (five quadrupoles and two bending magnets) employed in the transport line was limited, and some devices were densely packed. In this paper, analyses of the effect of fringe fields and magnetic interference of magnets are presented. 3D models of these magnets are built and their linear optical properties are compared with those obtained by hard edge models. The results indicated that the effects of these factors are significant and they would cause a mismatch of the beam at the exit of the transport line under the preliminary lattice design. To solve this problem, the beam was re-matched using the particle swarm optimization algorithm.
机译:太赫兹FEL器件中使用的传输线必须有效地传输整个系统中的电子束,并满足波荡器入口处电子束参数的要求。由于空间的限制,传输线中使用的磁体(五个四极和两个弯曲磁体)的尺寸受到限制,并且某些设备被密集包装。本文分析了边缘场和磁体的磁干扰的影响。建立这些磁体的3D模型,并将其线性光学特性与硬边模型获得的线性光学特性进行比较。结果表明,在初步晶格设计下,这些因素的影响非常显着,它们将导致传输线出口处的光束不匹配。为了解决这个问题,使用粒子群优化算法对光束进行了重新匹配。

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