Németh Károly, Shen Baifei, Li Yuelin, Shang Hairong, Crowell Robert, Harkay Katherine C, Cary John R
Accelerator Systems Division, Argonne National Laboratory, Argonne, IL 60439, USA.
Phys Rev Lett. 2008 Mar 7;100(9):095002. doi: 10.1103/PhysRevLett.100.095002. Epub 2008 Mar 4.
The origin of beam disparity in emittance and betatron oscillation orbits, in and out of the polarization plane of the drive laser of laser-plasma accelerators, is explained in terms of betatron oscillations driven by the laser field. As trapped electrons accelerate, they move forward and interact with the laser pulse. For the bubble regime, a simple model is presented to describe this interaction in terms of a harmonic oscillator with a driving force from the laser and a restoring force from the plasma wake field. The resulting beam oscillations in the polarization plane, with period approximately the wavelength of the driving laser, increase emittance in that plane and cause microbunching of the beam. These effects are observed directly in 3D particle-in-cell simulations.
激光等离子体加速器中,在驱动激光的偏振平面内外,发射度和电子回旋振荡轨道中的束流发散起源,是根据激光场驱动的电子回旋振荡来解释的。当被俘获的电子加速时,它们向前移动并与激光脉冲相互作用。对于泡状加速机制,提出了一个简单模型,用一个具有来自激光的驱动力和来自等离子体尾波场的恢复力的谐振子来描述这种相互作用。在偏振平面内产生的束流振荡,其周期近似为驱动激光的波长,会增加该平面内的发射度并导致束流的微聚束。这些效应在三维粒子模拟中被直接观测到。