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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Two-color FEL amplifier for femtosecond-resolution pump-probe experiments with GW-scale X-ray and optical pulses
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Two-color FEL amplifier for femtosecond-resolution pump-probe experiments with GW-scale X-ray and optical pulses

机译:两色FEL放大器,用于具有GW级X射线和光脉冲的飞秒分辨率泵浦探针实验

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摘要

The paper describes a scheme for pump-probe experiments that could be performed at the soft X-ray SASE FEL at the TESLA Test Facility (TTF) at DESY and determines what additional hardware developments will be required to bring these experiments to fruition. Pump-probe experiments combining pulses from a XFEL and optical femtosecond laser are very attractive for sub-picosecond time-resolved studies. Since the synchronization between the two light sources to an accuracy of 100 fs is not yet solved, it is proposed to derive both femtosecond radiation pulses from the same electron bunch but from two insertion devices. This eliminates the need for synchronization and developing tunable, high power femtosecond quantum laser. In the proposed scheme for pump-probe experiments, GW-level soft X-ray pulse is naturally synchronized with his GW-level optical pulse and cancel jitter. The concept is based on generation of the optical radiation in the master oscillator-power FEL amplifier configuration. An attractive feature of the FEL amplifier scheme is the absence of limitation which would prevent operation in the femtosecond regime in a wide (200-900 nm) wavelength range. The problem of tunable quantum seed laser can be solved with commercially available long pulse dye laser. An important feature of the proposed scheme is that optical radiator uses the spent electron beam. As a result, saturation mode of operation of the optical FEL does not interfere with the main mode of the soft X-ray SASE FEL operation.
机译:该论文描述了一种可以在DESY的TESLA测试设施(TTF)的软X射线SASE FEL上进行的泵浦探针实验的方案,并确定需要进行哪些其他硬件开发才能使这些实验实现。结合XFEL和飞秒激光的脉冲进行的泵浦探测实验对于亚皮秒级的时间分辨研究非常有吸引力。由于两个光源之间的同步精度尚未达到100 fs,因此建议从同一电子束而是从两个插入设备中导出两个飞秒辐射脉冲。这消除了同步和开发可调谐的高功率飞秒量子激光器的需要。在提出的泵浦探针实验方案中,GW级软X射线脉冲与GW级软脉冲自然地同步并消除了抖动。该概念基于主振荡器电源FEL放大器配置中光辐射的生成。 FEL放大器方案的一个吸引人的特征是没有限制,这将阻止飞秒范围内在宽(200-900 nm)波长范围内进行操作。可调量子种子激光器的问题可以用市售的长脉冲染料激光器解决。所提出的方案的重要特征是光辐射器使用了乏电子束。结果,光学FEL的饱和操作模式不会干扰软X射线SASE FEL操作的主要模式。

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