首页> 外文会议>International Particle Accelerator Conference >THE MODE MATCHING TECHNIQUE APPLIED TO THE TRANSVERSE BEAM COUPLING IMPEDANCE CALCULATION OF AZIMUTHALLY SYMMETRIC DEVICES OF FINITE LENGTH
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THE MODE MATCHING TECHNIQUE APPLIED TO THE TRANSVERSE BEAM COUPLING IMPEDANCE CALCULATION OF AZIMUTHALLY SYMMETRIC DEVICES OF FINITE LENGTH

机译:模式匹配技术应用于有限长度的四方称对称装置的横梁耦合阻抗计算

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The infinite length approximation is often used to simplify the calculation of the beam coupling impedance of accelerator elements. This is expected to be a reasonable assumption for devices whose length is greater than the transverse dimension but may be a less accurate approximation for segmented devices. In this contribution we present the extension of the study of the beam coupling impedance of a finite length device to the transverse plane. In order to take into account the finite length, we decompose the fields in the cavity and in the beam pipe into a set of orthonormal modes and apply the Mode Matching Method to obtain the impedance. To validate our method, we will present comparisons between analytical formulas and 3D electromagnetic CST simulations.
机译:无限长度近似通常用于简化加速器元件的光束耦合阻抗的计算。这预计这对于长度大于横向尺寸的设备是合理的假设,而是可以是分段设备的较低准确的近似。在这一贡献中,我们展示了有限长度装置的光束耦合阻抗的延伸到横向平面。为了考虑有限的长度,我们将腔体中的磁场和光束管中的磁场分解成一组正式模式,并应用模式匹配方法以获得阻抗。为了验证我们的方法,我们将在分析公式和3D电磁CST模拟之间提出比较。

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