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Design and comparison of superconducting rf gun cavities and beam dynamics for linear electron accelerators

机译:线性电子促进剂超导RF枪腔和梁动力学的设计与比较

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Designs and simulations of 1.4, 1.5, 1.6, and 1.8-cell SRF gun cavities are studied at a linear accelerator gun system and they are compared with each other. We obtain high power beam from high energy electron beam produced at a photocathode with high quantum efficiency, high average current laser with high brightness, and high accelerating gradient. Beam energy of the whole accelerator system is effected mainly by the optimized RF power usage inside cells, the RF power interaction with particle beams, and the accelerated beam obtained by using SRF-gun cells. Thus, the optimized beam parameters, the RF parameters, and the accelerator gun cavity parameters that depend on each cavity geometries of SRF gun are obtained and presented in this paper. Additionally, the energy values of the electrons with optimized emittance at the gun exit are achieved and shown. We will conclude our paper by giving the gun output energies specifying which elliptical cavity-cell geometry is more appropriate to push the beam further in consistent conditions. For the cavity electromagnetic fields and the geometric designs of the cavities and the solenoid, we have utilized 2D Superfish/Poisson and 3D Computer Simulation Technology Programs. Also beam dynamics studies are included for only 1.6-cell SRF gun cavity which has the highest quality factor in order to figure out how the beam behaves along the beamline at the gun system. Transverse emittance ( 2 pi mm mrad) and beam energy (similar to 3.5 MeV) at the exit of the gun system are obtained as expected.
机译:在线性加速器枪系统中研究了1.4,1.5,1.6和1.8单元SRF枪腔的设计和模拟,它们相互比较。我们从具有高量子效率的光电阴极生产的高能电子束获得高功率光束,具有高亮度的高平均电流激光器,高速梯度。整个加速器系统的光束能量主要由电池内部优化的RF功率使用,RF功率相互作用与粒子束,以及通过使用SRF枪电池获得的加速光束。因此,在本文中获得并呈现了依赖于SRF枪的每个腔几何形状的优化光束参数,RF参数和加速枪腔参数。另外,终止并示出了在枪出口处具有优化的发射率的电子的能量值。我们将通过给出枪输出能量来结束我们的纸张,指定哪个椭圆形腔 - 电池几何形状更适合于在一致条件下进一步推动光束。对于腔电磁场和空腔的几何设计和螺线管,我们利用了2D超级鱼/泊松和3D计算机仿真技术计划。梁动力学研究仅包括1.6电池SRF枪腔,其具有最高质量因子,以弄清楚梁系统的光束线路的行为。根据预期获得轨道系统出口处的横向发射率(<2 pi mm mrad)和梁能量(类似于3.5 mev)。

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