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Bright betatron X-ray radiation from a laser-driven-clustering gas target

机译:激光驱动的聚束靶标发出的明亮的Betatron X射线辐射

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摘要

Hard X-ray sources from femtosecond (fs) laser-produced plasmas, including the betatron X-rays from laser wakefield-accelerated electrons, have compact sizes, fs pulse duration and fs pump-probe capability, making it promising for wide use in material and biological sciences. Currently the main problem with such betatron X-ray sources is the limited average flux even with ultra-intense laser pulses. Here, we report ultra-bright betatron X-rays can be generated using a clustering gas jet target irradiated with a small size laser, where a ten-fold enhancement of the X-ray yield is achieved compared to the results obtained using a gas target. We suggest the increased X-ray photon is due to the existence of clusters in the gas, which results in increased total electron charge trapped for acceleration and larger wiggling amplitudes during the acceleration. This observation opens a route to produce high betatron average flux using small but high repetition rate laser facilities for applications.
机译:飞秒(fs)激光等离子体产生的硬X射线源,包括激光尾波场加速电子产生的Betatron X射线,具有紧凑的尺寸,fs脉冲持续时间和fs泵浦探测能力,使其有望在材料中广泛使用和生物科学。目前,这种电子感应加速器X射线源的主要问题是即使使用超强激光脉冲,平均通量也有限。在这里,我们报告说,使用小尺寸激光辐照的集束气体喷射靶可以产生超明亮的电子加速器X射线,与使用气体靶获得的结果相比,X射线产量提高了十倍。我们建议增加X射线光子的原因是气体中存在簇,这会导致为加速捕获的总电子电荷增加,并且在加速过程中出现较大的摆动幅度。该观察结果为使用小型但重复频率高的激光设备开辟了一条产生高电子感应加速器平均通量的途径。

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