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首页> 外文期刊>Nuclear instruments and methods in physics research >Using short drive laser pulses to achieve net focusing forces in tailored dual grating dielectric structures
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Using short drive laser pulses to achieve net focusing forces in tailored dual grating dielectric structures

机译:使用短驱动激光脉冲在定制的双光栅介电结构中获得净聚焦力

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Laser-driven grating type DLA (Dielectric Laser Accelerator) structures have been shown to produce accelerating gradients on the order of GeV/m. In simple beta-matched grating structures due to the nature of the laser induced steady-state in-channel fields the per period forces on the particles are mostly in longitudinal direction. Even though strong transverse magnetic and electric fields are present, the net focusing effect over one period at maximum energy gain is negligible in the case of relativistic electrons. Stable acceleration of realistic electron beams in a DLA channel however requires the presence of significant net transverse forces. In this work we simulate and study the effect of using the transient temporal shape of short Gaussian drive laser pulses in order to achieve suitable field configurations for potentially stable acceleration of relativistic electrons in the horizontal plane. In order to achieve this, both the laser pulse and the grating geometry are optimized. Simulations conducted with the Particle-In-Cell code VSim 7.2 are shown for both the transient and steady state/long pulse case. Finally we investigate how the drive laser phase dependence of the focusing forces could affect a potential DLA-based focusing lattice.
机译:激光驱动的光栅型DLA(介电激光加速器)结构已显示出产生GeV / m量级的加速梯度。在简单的β匹配光栅结构中,由于激光诱导的稳态通道内场的性质,每个周期作用在粒子上的力大部分在纵向。即使存在强的横向磁场和电场,在相对论电子的情况下,在一个周期内以最大能量增益获得的净聚焦效应也可以忽略不计。然而,在DLA通道中稳定地加速实际电子束需要存在明显的净横向力。在这项工作中,我们模拟和研究了使用短高斯驱动激光脉冲的瞬态时间形状的效果,以实现合适的场配置,以实现相对论电子在水平面中的潜在稳定加速。为了实现这一点,优化了激光脉冲和光栅几何形状。对于瞬态和稳态/长脉冲情况,均显示了使用粒子内代码VSim 7.2进行的仿真。最后,我们研究聚焦力的驱动激光相位依赖性如何影响潜在的基于DLA的聚焦晶格。

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