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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Pump-probe experiments in the femtosecond regime, combining first and third harmonics of SASE FEL radiation
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Pump-probe experiments in the femtosecond regime, combining first and third harmonics of SASE FEL radiation

机译:飞秒状态下的泵浦探针实验,结合了SASE FEL辐射的一次和三次谐波

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摘要

Two-color pump-probe experiments combining optical femtosecond lasers with short wavelength radiation from a free electron laser (FEL) 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 radiation pulses from the same electron bunch. In the present work we focus on the special case where pump and probe beams are generated by the same electron bunch in the same insertion device. Specifically we propose to combine GW-level VUV FEL pulses between 150 and 90 nm wavelength and 10 MW-level third-harmonic radiation between 50 and 30 nm. This scheme does not require any special synchronization nor additional FEL hardware components since the nonlinear third-harmonic generation occurs naturally in the planar FEL undulator. Reflection optics are used for beam splitting and tunable delay, and the two harmonics are separated by using notch filters. The effect on the pulse duration is negligible.
机译:将光学飞秒激光器与来自自由电子激光器(FEL)的短波长辐射相结合的双色泵浦实验对于亚皮秒级的时间分辨研究非常有吸引力。由于尚未解决两个光源之间的同步,精度达100 fs,因此建议从同一电子束中导出两个辐射脉冲。在当前的工作中,我们将重点放在特殊情况下,即在同一插入设备中同一电子束产生泵浦光束和探测光束。具体来说,我们建议将波长在150和90 nm之间的GW级VUV FEL脉冲与50和30 nm之间的10 MW级的三次谐波辐射进行组合。该方案不需要任何特殊的同步,也不需要额外的FEL硬件组件,因为非线性三次谐波的生成自然发生在平面FEL波动器中。反射光学器件用于分束和可调延迟,并且使用陷波滤波器将两个谐波分开。对脉冲持续时间的影响可以忽略不计。

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