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Numerical analysis and design of collinear load for S-band linac based on FeSiAl material

机译:基于FeSiAl材料的S带直线加速器共线载荷的数值分析与设计

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摘要

Collinear load instead of traditional waveguide load is advanced for Linac miniaturization. In order to develop high power collinear load, an efficient microwave-absorbing material of FeSiAl is employed, meanwhile responding simulation design method is proposed in this paper. CST simulations demonstrate that the operation frequency of the cavity falls linearly with a rate of about -14.74 kHz/mm3 to the FeSiAl coating volume, while the quality factor appears inversely proportional and can drop to about 25. Cavity dimensions were adjusted to compensate the frequency shift from 2856 MHz. Orthogonal tests indicate that the real part of the permeability of FeSiAl notably affect the operation frequency of load cavities, while the imaginary part of the permeability acts on the attenuation much. Eventually based on uniform power absorption principle, a six-cavity collinear load was designed with one-way attenuation of -29.47 dB, and the detail parameters are presented.
机译:为了直线加速器的小型化,采用了共线负载而不是传统的波导负载。为了开发大功率共线负载,采用了高效的FeSiAl吸波材料,同时提出了响应仿真设计方法。 CST模拟表明,腔体的工作频率相对于FeSiAl涂层体积以-14.74 kHz / mm3的速率线性下降,而品质因数似乎成反比,并且可以下降到大约25。腔体尺寸经过调整以补偿频率从2856 MHz正交试验表明,FeSiAl磁导率的实部显着影响载荷腔的工作频率,而磁导率的虚部对衰减的影响很大。最终,基于均匀功率吸收原理,设计了单腔衰减为-29.47 dB的六腔共线负载,并给出了详细的参数。

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