Characterization of RF System for MIR/THz Free Electron Lasers at Chiang Mai University

Particles Pub Date : 2024-04-11 DOI:10.3390/particles7020021
P. Kitisri, J. Saisut, S. Rimjaem
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Abstract

The establishment of the mid-infrared and terahertz free-electron laser (MIR/THz FEL) facility is ongoing at the PBP-CMU Electron Linac Laboratory (PCELL) in Chiang Mai University. The facility utilizes an S-band radio-frequency (RF) gun and a linear accelerator (linac) to generate and accelerate electron bunches. These electron bunches are accelerated in the RF gun and the linac using RF pulses with a frequency of 2856 MHz. Measuring the RF properties becomes essential, as the RF pulse information can be utilized to estimate the electron beam properties. To achieve the measurement results, we employed an RF measurement system comprising directional couplers, coaxial cables, attenuators, a crystal detector, and an oscilloscope. Prior to conducting measurements, the crystal detector and RF equipment were calibrated and characterized to ensure precise and reliable results. The electron beam energy estimation using the measured RF power was compared with the measured beam energies. The gun and the linac were operated with an absorbed RF power of 1.52 MW and an input power of 1.92 MW, respectively. The estimated electron beam energies were found to be 2.18 MeV and 15.0 MeV, respectively, closely aligning with the measured beam energies of 2.1 MeV and 14.0 MeV after the gun and linac acceleration. These consistent energy values support the reliability of our RF power measurement system and procedure.
清迈大学用于 MIR/THz 自由电子激光器的射频系统特性分析
清迈大学 PBP-CMU 电子直列加速器实验室(PCELL)正在建立中红外和太赫兹自由电子激光(MIR/THz FEL)设施。该设施利用 S 波段射频(RF)枪和直线加速器(直列加速器)来产生和加速电子束。这些电子束在射频枪和线性加速器中使用频率为 2856 MHz 的射频脉冲进行加速。测量射频特性至关重要,因为射频脉冲信息可用于估算电子束特性。为了获得测量结果,我们采用了一套由定向耦合器、同轴电缆、衰减器、晶体探测器和示波器组成的射频测量系统。在进行测量之前,我们对晶体探测器和射频设备进行了校准和鉴定,以确保测量结果精确可靠。使用测量到的射频功率估算电子束能量,并与测量到的电子束能量进行比较。发射枪和直列加速器的吸收射频功率分别为 1.52 兆瓦和 1.92 兆瓦。估计的电子束能量分别为 2.18 兆电子伏特和 15.0 兆电子伏特,与发射枪和直列加速器加速后测量的电子束能量 2.1 兆电子伏特和 14.0 兆电子伏特非常接近。这些一致的能量值证明了我们的射频功率测量系统和程序的可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
3.20
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