首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Design and simulation of 3 1/2-cell superconducting gun cavity and beam dynamics studies of the SASE-FEL System at the Institute of Accelerator Technologies at Ankara University
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Design and simulation of 3 1/2-cell superconducting gun cavity and beam dynamics studies of the SASE-FEL System at the Institute of Accelerator Technologies at Ankara University

机译:安卡拉大学加速器技术研究所的SASE-FEL系统的3 1/2单元超导枪腔和射束动力学的设计与仿真

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Design and simulation of a superconducting gun cavity with 3 1/2 cells have been studied in order to give the first push to the electron beam for the linear accelerating system at The Institute of Accelerator Technologies at Ankara University. Electrons are accelerated through the gun cavity with the help of the Radiofrequency power suppliers from cryogenic systems. Accelerating gradient should be as high as possible to accelerate electron beam inside the cavity. In this study, electron beam reaches to 9.17 MeV energy at the end of the gun cavity with the accelerating gradient; E_c= 19.21 MV/m. 13 GHz gun cavity consists of three TESLA-like shaped cells while the special designed gun-cell includes a cathode plug. Optimized important beam parameters inside the gun cavity, average beam current 3 mA, transverse emittance 2.5 mm mrad, repetition rate 30 MHz and other parameters are obtained for the SASE-FEL System. The Superfish/Poisson program is used to design each cell of the superconducting cavity. Superconducting gun cavity and Radiofrequency properties are studied by utilizing 2D Superfish/Poisson, 3D Computer Simulation Technology Microwave Studio, and 3D Computer Simulation Technology Particle Studio. Superfish/Poisson is also used to optimize the geometry of the cavity cells to get the highest accelerating gradient. The behavior of the particles along the beamline is included in this study. ASTRA Code is used to track the particles.
机译:为了对安卡拉大学加速器技术研究所的线性加速系统进行电子束的首次推动,研究了具有3 1/2个单元的超导炮腔的设计和仿真。在低温系统的射频电源供应器的帮助下,电子通过喷枪腔加速。加速梯度应尽可能高,以加速腔体内的电子束。在这项研究中,电子束在枪腔末端以加速梯度达到9.17 MeV能量。 E_c = 19.21MV / m。 13 GHz枪膛由三个TESLA形电池组成,而经过特殊设计的枪膛包括一个阴极塞。对于SASE-FEL系统,获得了在炮膛内优化的重要射束参数,平均射束电流3 mA,横向发射率2.5 mm mrad,重复频率30 MHz以及其他参数。 Superfish / Poisson程序用于设计超导腔的每个单元。利用2D Superfish / Poisson,3D计算机仿真技术Microwave Studio和3D计算机仿真技术Particle Studio研究了超导枪腔和射频特性。 Superfish / Poisson也可用于优化型腔的几何形状,以获得最高的加速梯度。这项研究包括粒子沿束线的行为。 ASTRA代码用于跟踪粒子。

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