基于多级锥形射频摆动器的自由电子激光器

S. Kuzikov, S. Antipov, A. Vikharev, A. Savilov, E. Gomez
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摘要

我们提出了一种在自由电子激光(FEL)中高效率的“多级”俘获机制。这种自由电子激光器方案使用强锥形飞行射频(RF)波动器部分,由现有的后向波振荡器(BWOs)产生的短(纳秒)千兆瓦功率微波脉冲馈送。在这种情况下,射频源的锁相是不必要的。在现代激光等离子体加速器的驱动下,该方法的效率可达几个百分点,产生能量扩散约为1%的束。用30 GHz波动器原型进行的低功耗测试表明,周期性可减小50%。多级变细对x射线FEL振荡器(XFELO)也很有吸引力。由非锥形和锥形波动器组成的XFELO可以自调制腔的q因子。这使得XFELO启动速度更快,同时在稳定状态下提供高效率。在XFELO概念中,第一个均匀波动器插入光学腔中,而第二个外部波动器在自放大自发发射(SASE)状态下工作,消耗由第一个波动器产生的微束电子束。这个想法是基于在形状复杂的腔体中使用智能反射镜。这些反射器由于设计得当,在其中一个反射镜的中心产生一个零场的本征模,使得电子可以通过反射镜的一个孔直接飞出。
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Free Electron Lasers Based on Multi-Stage Tapered RF Wigglers
We propose a high-efficiency regime of a “multi-stage” trapping in a Free Electron Laser (FEL). This FEL scheme uses strongly tapered flying radio frequency (RF) undulator sections to be fed by short (nanosecond) gigawatt-power microwave pulses produced by existing Backward Wave Oscillators (BWOs). In this regime, phase locking of the RF sources is not necessary. The proposed method promises an efficiency at level of several percents in FELs driven by modern laser-plasma accelerators producing bunches with ~1 % energy spread. Low-power tests with 30 GHz undulator prototypes have shown that up to 50% tapering of the periodicity is obtainable. Multi-stage tapering is also appealing for X-ray FEL oscillators (XFELO). An XFELO, consisted of not tapered and tapered undulators, can have self-modulated Q-factor of a cavity. This allows XFELO to start up faster and at the same time to provide a high efficiency in steady state regime. Multi-staging might also improve an XFELO concept where the first uniform undulator is inserted in an optical cavity, but the second external undulator works in Self-Amplified Spontaneous Emission (SASE) regime consuming the microbunched electron beam generated by the first undulator. The idea is based on the use of smart reflecting mirrors in a cavity with complicated shapes. These reflectors due to a proper design produce an eigenmode with zero-field in the center of one of mirrors so that electrons can be out-coupled flying straight through a hole in this mirror.
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