论文标题

对受控激光Wakefield加速的血浆腔的光学塑形

Optical Shaping of Plasma Cavity for Controlled Laser Wakefield Acceleration

论文作者

Rao, Bobbili Sanyasi, Cho, Myung Hoon, Kim, Hyung Taek, Shin, Jung Hun, Oh, Kyung Hwan, Jeon, Jong Ho, Yoo, Byung Ju, Cho, Seong Ha, Lee, Seong Ku, Nam, Chang Hee

论文摘要

激光Wakefield加速器依赖于相对移动的微米大小的等离子体腔,可提供极高的电场> 100GV/m。在这里,我们证明了血浆腔的横向形状,以产生受控的子GEV电子束,采用具有轴向旋转的椭圆形焦点的激光脉冲。我们通过旋转焦点显示了电子束的电子自注,电荷和横向轮廓的控制能力。我们观察到,与圆形焦点相比,我们观察到椭圆形焦点的效果印在电子束的轮廓和电子能量增加中。我们进行了3D粒子(PIC)模拟,该模拟重现了实验结果,并揭示了新的不对称自我注射过程的动力学。这个简单的方案为激光Wakefield加速提供了一种新颖的控制方法,可为各种应用生产量身定制的电子束和X射线。

Laser wakefield accelerators rely on relativistically moving micron-sized plasma cavities that provide extremely high electric field >100GV/m. Here, we demonstrate transverse shaping of the plasma cavity to produce controlled sub-GeV electron beams, adopting laser pulses with an axially rotatable ellipse-shaped focal spot. We showed the control capability on electron self-injection, charge, and transverse profile of the electron beam by rotating the focal spot. We observed that the effect of the elliptical focal spot was imprinted in the profiles of the electron beams and the electron energy increased, as compared to the case of a circular focal spot. We performed 3D particle-in-cell (PIC) simulations which reproduced the experimental results and revealed dynamics of a new asymmetric self-injection process. This simple scheme offers a novel control method on laser wakefield acceleration to produce tailored electron beams and x-rays for various applications.

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