Chen Jiyuan, Xu Sa, Tang Ning, Wang Sicong, Li Zhengyan
Opt Express. 2021 Apr 26;29(9):13302-13313. doi: 10.1364/OE.420150.
Betatron radiation from relativistic electrons accelerated by a laser plasma wakefield is a promising x-ray source. However, the betatron photon number and energy is limited by the MeV electron energy when accelerated by a sub-terawatt laser pulse. Here we have proposed a scheme of enhancing the betatron radiation of electrons accelerated by a millijoule laser pulse. By applying a moderate mid-infrared control laser field, the plasma bubble and electrons injected inside are forced to oscillate transversely at a high, tunable frequency, enhancing the betatron oscillation strength and resulting in soft x-ray radiation.
由激光等离子体尾波场加速的相对论电子产生的电子回旋加速器辐射是一种很有前景的X射线源。然而,当由亚太瓦激光脉冲加速时,电子回旋加速器的光子数和能量受到兆电子伏电子能量的限制。在此,我们提出了一种增强由毫焦耳激光脉冲加速的电子的电子回旋加速器辐射的方案。通过施加适度的中红外控制激光场,迫使等离子体泡和注入其中的电子以高可调频率横向振荡,增强电子回旋加速器振荡强度并产生软X射线辐射。