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Start-to-end simulations of SASE FEL at the TESLA Test Facility, phase 1

机译:第1阶段在TESLA测试设施上对SASE FEL进行从头到尾的仿真

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摘要

Phase 1 of the vacuum ultra-violet free-electron laser (FEL) at the TESLA Test Facility recently concluded operation. It successfully demonstrated the saturation of a SASE FEL in the wavelength range of 80-120 nm. We present a posteriori start-to-end numerical simulations of this FEL. These simulations are based on the programs Astra and elegant for the generation and transport of the electron distribution. An independent simulation of the intricate beam dynamics in the magnetic bunch compressor is performed with the program CSRtrack. The SASE FEL process is simulated with the code FAST. From our detailed simulations and the resulting phase space distribution at the undulator entrance, we found that the FEL was driven only by a small fraction (slice) of the electron bunch. This "lasing slice" is located in the head of the bunch, and has a peak current of approximately 3 kA. A strong energy chirp (due to the space charge field after compression) within this slice had a significant influence on the FEL operation. Our study shows that the radiation pulse duration is about 40 fs (FWHM) with a corresponding peak power of 1.5 GW. The simulated FEL properties are compared with various experimental data and found to be in excellent agreement.
机译:TESLA测试设施的真空紫外自由电子激光器(FEL)的第一阶段最近结束了运行。它成功地证明了SASE FEL在80-120 nm波长范围内的饱和度。我们介绍了该FEL的后验开始到结束的数值模拟。这些模拟基于程序Astra和Elegant用于电子分布的生成和传输。使用程序CSRtrack对磁束压缩机中复杂的束动力学进行独立仿真。用代码FAST模拟了SASE FEL过程。从我们的详细模拟以及波荡器入口处的相空间分布,我们发现FEL仅受电子束中一小部分(片)的驱动。该“激光切片”位于束的头部,并具有大约3 kA的峰值电流。该切片内的强能量chi(由于压缩后的空间电荷场)对FEL操作有重大影响。我们的研究表明,辐射脉冲持续时间约为40 fs(FWHM),相应的峰值功率为1.5 GW。将模拟的FEL特性与各种实验数据进行比较,发现它们具有极好的一致性。

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