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High peak current operation of x-ray free-electron laser multiple beam lines by suppressing coherent synchrotron radiation effects

机译:通过抑制相干同步辐射影响X射线自由电子激光多光束线的高峰值电流操作

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The parallel operation of multiple beam lines is an important means to expand the opportunity of user experiments at x-ray free-electron laser (XFEL) facilities. At SPring-8 Angstrom free-electron laser (SACLA), the multi-beam-line operation had been tested using two beam lines, but transverse coherent synchrotron radiation (CSR) effects at a dogleg beam transport severely limited the laser performance. To suppress the CSR effects, a new beam optics based on two double bend achromat (DBA) structures was introduced for the dogleg. After the replacement of the beam optics, high peak current bunches of more than 10 kA are now stably transported through the dogleg and the laser pulse output is increased by a factor of 2--3. In the multi-beam-line operation of SACLA, the electron beam parameters, such as the beam energy and peak current, can be adjusted independently for each beam line. Thus the laser output can be optimized and wide spectral tunability is ensured for all beam lines.
机译:多光束线的并行操作是扩大用户在X射线自由电子激光(XFEL)设施上进行实验的机会的重要手段。在SPring-8埃斯特自由电子激光器(SACLA)上,多束线操作已使用两条光束线进行了测试,但是在束腿光束传输中的横向相干同步辐射(CSR)效应严重限制了激光器的性能。为了抑制CSR效应,为狗腿引入了一种基于两个双弯曲消色差(DBA)结构的新型光束光学器件。在更换了光束光学器件之后,超过10 kA的高峰值电流束现在稳定地通过狗腿传输,并且激光脉冲输出增加了2--3倍。在SACLA的多束线操作中,可以针对每条束线独立调整电子束参数,例如束能量和峰值电流。因此,可以优化激光输出,并确保所有光束线的宽光谱可调性。

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