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Comparative study of betatron radiation from laser-wakefield and direct-laser accelerated bunches of relativistic electrons

机译:激光尾场和直接激光加速相对论电子束中的电子辐射的比较研究

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摘要

The dynamics of relativistic electrons in a laser driven plasma cavity are studied via measurements of their radiation. For ultrashort laser pulses at comparatively low focused laser intensities (3 < a_0 < 10), low density and long f-number of 10, electrons are predominantly accelerated in the wakefield leading to quasi-monoenergetic collimated electron beams and well collimated (< 12 mrad) beams of comparatively soft x-rays (1-10 keV) with unprecedented small source size (2-3 μm). For laser pukes with increasing laser intensity (10 < a_0 < 30), density and short f-number (< 5), electrons are accelerated directly by the laser, leading to divergent quasi-maxwellian electron beams and divergent (50-95°) beams of hard x-rays (20-50 keV) with relatively large source size (> 100 μm). In both cases, the measured x-rays are well described in the synchrotron asymptotic limit of electrons oscillating in a plasma channel. At low laser intensity transverse oscillations are small as the electrons are predominantly accelerated axially by the laser generated wakefield. At high laser intensity, electrons are directly accelerated by the laser. A betatron resonance leads to a tenfold increase in transverse oscillation amplitude and electrons enter a highly radiative regime with up to 5% of their energy converted into x-rays.
机译:通过测量其辐射,研究了激光驱动等离子体腔中相对论电子的动力学。对于在相对较低的聚焦激光强度(3 100μm)的硬X射线(20-50 keV)光束。在这两种情况下,在等离子通道中振荡的电子的同步加速器渐近极限中都很好地描述了测得的X射线。在低激光强度下,由于电子主要被激光产生的尾场轴向加速,因此横向振荡很小。在高激光强度下,电子直接被激光加速。电子感应加速器共振导致横向振荡幅度增加十倍,电子进入高辐射状态,其能量的5%转换为X射线。

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