论文标题
用激光包膜模型在细胞代码中粒子中激光隧穿电离的数值建模
Numerical modeling of laser tunneling ionization in Particle in Cell Codes with a laser envelope model
论文作者
论文摘要
在许多感兴趣的情况下,使用包络模型可以大大减少激光韦克菲尔德加速器的细胞模拟所需的资源。然而,在这段时间内,隧道电离的包括激光 - 血浆加速度的平均处理并不直接,因为理想情况下应复制通过电离获得的电子束的统计特征,而无需解决高频激光振荡。在这种情况下,提出了已知的包膜电离程序的扩展,对于具有较高强度的激光脉冲也有效,这在于将初始纵向漂移添加到激光脉冲电离介质中的新创建的电子中。在简单的基准测试中,在线性和圆极化中均显示了所提出的过程的准确性,在该基准测试中,氮气平板通过激光脉冲电离,并且在非线性状态下用电离注射的激光等离子加速度更复杂的基准。随着包络电离算法的这种添加,可以用激光器(电荷,平均能量,能量扩散,RMS,RMS尺寸,归一化的发射率)将束的主要相空间属性与非固定模拟相提并论,这些材料可显着降低资源,甚至在cylindrindicr cylindrindicr cemrine中,都可以准确地估算出激光的电离(电荷,平均能量,能量,RMS,RMS尺寸,归一化的发射)。通过这种扩展的算法,即使在笔记本电脑上,也可以轻松地对激光韦克菲尔德加速度的电离注射进行初步研究。
The resources needed for Particle in Cell simulations of Laser Wakefield Acceleration can be greatly reduced in many cases of interest using an envelope model. However, the inclusion of tunneling ionization in this time averaged treatment of laser-plasma acceleration is not straightforward, since the statistical features of the electron beams obtained through ionization should ideally be reproduced without resolving the high frequency laser oscillations. In this context, an extension of an already known envelope ionization procedure is proposed, valid also for laser pulses with higher intensities, which consists in adding the initial longitudinal drift to the newly created electrons within the laser pulse ionizing the medium. The accuracy of the proposed procedure is shown with both linear and circular polarization in a simple benchmark where a nitrogen slab is ionized by a laser pulse, and in a more complex benchmark of laser plasma acceleration with ionization injection in the nonlinear regime. With this addition to the envelope ionization algorithm, the main phase space properties of the bunches injected in a plasma wakefield with ionization by a laser (charge, average energy, energy spread, rms sizes, normalized emittance) can be estimated with accuracy comparable to a non-envelope simulation with significantly reduced resources, even in cylindrical geometry. Through this extended algorithm, preliminary studies of ionization injection in Laser Wakefield Acceleration can be easily carried out even on a laptop.