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Control of the Swiss Free Electron Laser: Methods for Precision Control of Pulsed-Mode Accelerator Beams

机译:瑞士自由电子激光器的控制:脉冲模式加速器光束的精确控制方法

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The SwissFEL is capable of generating high-power, tunable X-ray pulses that are used to study molecular structure and dynamic processes at extremely fast timescales. The FEL effectively acts as a femtosecond photographic flash and will allow researchers to observe the creation of molecules in chemical reactions or study the detailed structure of proteins. The X-rays are generated by accelerating a pulsed beam of electrons through a high-energy, pulsed, radio-frequency field-to an energy of 5.8 GeV-and then a transverse periodic magnetic field. The accelerator is a series of 113 evacuated tubelike structures, energized by 32 high-power (up to 50 MW peak) amplifiers. The amplifiers are switched on for only 1-3 μs as each beam pulse is fired, and the entire process repeats 100 times per second. Precise control of each amplifier is applied every 4.2 ns. The control methods described involve learning the subtleties of the effect of adjustments on the beam pulse and applying these as corrections to the next pulse. Experiments on full-scale amplifiers and shorter beam-lines show that these corrections provide the electron beam quality and repeatability for the complete FEL system.
机译:SwissFEL能够产生高功率,可调的X射线脉冲,用于在极快的时间尺度上研究分子结构和动态过程。 FEL有效地充当飞秒照相闪光灯,并使研究人员能够观察化学反应中分子的产生或研究蛋白质的详细结构。 X射线是通过将脉冲的电子束通过高能量的脉冲射频场加速到5.8 GeV的能量,然后是横向周期性磁场而产生的。该加速器是由113个排空的管状结构组成的系列,由32个大功率(峰值高达50 MW)放大器供电。当发射每个光束脉冲时,放大器仅打开1-3μs,并且整个过程每秒重复100次。每隔4.2 ns对每个放大器进行精确控制。所描述的控制方法包括了解调整对光束脉冲的影响的精妙之处,并将其作为对下一个脉冲的校正。在满量程放大器和较短的束线上进行的实验表明,这些校正为整个FEL系统提供了电子束质量和可重复性。

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