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Tunable synchrotron-like radiation from centimeter scale plasma channels

机译:厘米级等离子通道可调谐的类似同步加速器的辐射

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摘要

Synchrotron radiation (SR) sources are immensely useful tools for scientific researches and many practical applications. Currently, the state-of-the-art synchrotrons rely on conventional accelerators, where electrons are accelerated in a straight line and radiate in bending magnets or other insertion devices. However, these facilities are usually large and costly. Here, we study a compact all optical synchrotron-like radiation source based on laser-plasma acceleration either in a straight or a curved plasma channel. With the laser pulse off-axially injected, its centroid oscillates transversely in the plasma channel. This results in a wiggler motion of the whole accelerating structure and the self-trapped electrons behind the laser pulse, leading to strong synchrotron-like radiations with tunable spectra. It is further shown that a palmtop ring-shaped synchrotron is possible with current high power laser technologies. With its potential of high flexibility and tunability, such light sources once realized would find applications in wide areas and make up the shortage of large SR facilities.
机译:同步辐射(SR)源是科学研究和许多实际应用中非常有用的工具。当前,最先进的同步加速器依靠传统的加速器,其中电子在直线中被加速并在弯曲磁体或其他插入装置中辐射。但是,这些设施通常很大且很昂贵。在这里,我们研究了基于直线或弯曲等离子通道中激光等离子加速度的紧凑型全光同步加速器样辐射源。激光脉冲离轴注入后,其质心在等离子体通道中横向振荡。这导致整个加速结构的摆动运动以及激光脉冲后面的自陷电子,从而产生具有可调谐光谱的强同步辐射状辐射。进一步显示,利用当前的高功率激光技术,掌上环形同步加速器是可能的。这种光源具有高度灵活性和可调性的潜力,一旦实现,便会在广泛的领域找到应用,并弥补了大型SR设备的不足。

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