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Performance simulation of infrared free electron laser at the Pohang Light Source test linac

机译:浦项光源直线加速器上红外自由电子激光的性能模拟

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Numerical simulation studies are performed for the proposed infrared self-amplified spontaneous-emission free-electron laser (SASE-FEL) at the existing PLS test linac. It is shown that a high-gain SASE-FEL with a 1.5 μm radiation wavelength pould be driven by a 61-MeV electron beam from the S-band rf linac and a 5-m long undulator. Third-harmonic generation to 0.5 μm radiation wavelength was also investigated to enhance the usefulness of the infrared SASE-FEL facility. Bunching fractions of the nonlinear third harmonic to the fundamental mode in the designed SASE-FEL is estimated and showed that the third-harmonic emission resulted in the same trend as the fundamental. This paper attempts to investigate the effect of the beam parameters such as the emittance, the energy spread, the beam energy, and the peak beam current to the designed infrared SASE-FEL. The wake effects due to the surface roughness of beam chamber in the undulator are also estimated.
机译:在现有的PLS测试直线加速器上,对拟议的红外自放大自发自由电子激光器(SASE-FEL)进行了数值模拟研究。结果表明,辐射波长为1.5μm的高增益SASE-FEL由来自S波段射频直线加速器的61 MeV电子束和5 m长的起伏器驱动。还研究了辐射波长为0.5μm的三次谐波产生,以增强红外SASE-FEL设施的实用性。估计了在设计的SASE-FEL中非线性三次谐波向基模的束缚分数,表明三次谐波发射与基波的趋势相同。本文试图研究诸如发射率,能量散布,光束能量和峰值光束电流等光束参数对设计的红外SASE-FEL的影响。还估计了由于波荡器中光束腔室的表面粗糙度而引起的唤醒效应。

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