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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Scheme for time-resolved experiments based on the generation of ferntosecond pulses by a sideband-seeded soft X-Ray SASE FEL
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Scheme for time-resolved experiments based on the generation of ferntosecond pulses by a sideband-seeded soft X-Ray SASE FEL

机译:基于边带播种的软X射线SASE FEL产生飞秒脉冲的时间分辨实验方案

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摘要

In this paper, we describe the extention of the soft X-ray SASE FEL facility for two-color time-resolved experiments. A new type of pump-probe technique is proposed which is based on the use of soft X-ray SASE FEL combined with an fs quantum laser. An ultrashort laser pulse is used for modulation of the energy and density of the electrons within a slice of the electron bunch at a frequency omega(opt). The density modulation exiting the modulator (energy-modulation undulator and dispersion section) is about 10%. Following the modulator the beam enters an X-ray SASE FEL undulator, and is bunched at a frequency omega(0). This leads to an amplitude modulation of the beam density at the sidebands omega(0) +/- omega(opt). The sideband density modulation takes place at the part of the electron pulse defined by the duration of the seed laser pulse that is much shorter than the electron pulse. Following the SASE FEL undulator the beam and SASE radiation enter undulator section (radiator) which is resonant at the frequency omega(0) - omega(opt). Because the beam has a large component of bunching at the sideband, coherent emission is copiously produced within fs slice of the electron bunch. Separation of the sideband frequency from the central frequency by a time-compensated mono-chromator is used to distinguish the fs pulses from the sub-ps intense SASE pulses. Finally, the fs soft X-ray pulses are combined with optical pulses generated in the seed laser system. In the proposed scheme for pump-probe experiments, fs soft X-ray pulse is naturally synchronized with his fs optical pulse and cancel jitter. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 10]
机译:在本文中,我们描述了用于两种颜色时间分辨实验的软X射线SASE FEL工具的范围。提出了一种新型的泵浦探测技术,该技术基于软X射线SASE FEL与fs量子激光器的结合使用。超短激光脉冲用于调制频率为ω(opt)的电子束切片中电子的能量和密度。离开调制器(能量调制波荡器和色散部分)的密度调制约为10%。光束跟随调制器进入X射线SASE FEL波动器,并以omega(0)频率成束。这导致在边带omega(0)+/- omega(opt)处光束密度的幅度调制。边带密度调制发生在电子脉冲的一部分,该部分由种子激光脉冲的持续时间定义,该持续时间比电子脉冲短得多。跟随SASE FEL起伏器,光束和SASE辐射进入起伏器部分(辐射器),该部分在omega(0)-omega(opt)频率处谐振。由于电子束在边带具有较大的聚束成分,因此在电子束的fs片内会大量产生相干发射。通过时间补偿单色仪将边带频率与中心频率分开,用于将fs脉冲与sub-ps强SASE脉冲区分开。最后,将fs软X射线脉冲与在种子激光系统中生成的光脉冲组合在一起。在提出的泵浦探针实验方案中,fs软X射线脉冲与他的fs光脉冲自然同步,并消除了抖动。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:10]

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