Guiding properties of Bessel–Gaussian and super-Gaussian pulses in inhomogeneous parabolic plasma channels

IF 3.1 3区 物理与天体物理 Q2 Engineering Optik Pub Date : 2024-10-10 DOI:10.1016/j.ijleo.2024.172071
E. Gholipoor , R. Fallah , S.M. Khorashadizadeh , A.R. Niknam
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Abstract

The guidance and stable propagation of laser pulses over many Rayleigh lengths are crucial for the plasma electron acceleration in the laser wakefield accelerators. Using plasma channels with specific characteristics can lead to the proper guidance of the laser pulse. Here, quasi-three-dimensional particle-in-cell (PIC) simulations are performed to investigate the guidance of Bessel–Gaussian pulse (BGP) of zeroth order and super-Gaussian pulse (SGP) of 3rd and 4th orders in an axially and radially inhomogeneous plasma channel. The effects of the channel radius and depth, the laser wavelength and initial spot size, and the plasma channel inhomogeneity on the guidance of the laser pulse are also examined. The results indicate that the guidance of a laser pulse in the plasma channel depends on the pulse profile, and under certain conditions, the pulses can be guided with the least variation of spot size in the inhomogeneous plasma channel. It is shown that the channel depth and the initial laser spot size are very effective in pulse guiding, as the values of these parameters increase, the pulse guidance is done better. In addition, the results show that the guidance of laser pulse is dependent on the type of plasma inhomogeneity represented by three different kinds of initial conditions, as considering the nonlinear-axial inhomogeneity in the parabolic plasma channel can lead to more convergence than the axially homogeneous and linear-axially plasma density profiles.
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不均匀抛物面等离子体通道中贝塞尔高斯和超高斯脉冲的导向特性
激光脉冲在许多瑞利长度上的引导和稳定传播对于激光汪场加速器中的等离子体电子加速至关重要。使用具有特定特性的等离子体通道可以正确引导激光脉冲。在此,我们进行了准三维粒子入胞(PIC)模拟,研究了在轴向和径向不均匀等离子体通道中,第零阶贝塞尔-高斯脉冲(BGP)和第3、4阶超高斯脉冲(SGP)的引导问题。此外,还研究了通道半径和深度、激光波长和初始光斑大小以及等离子体通道不均匀性对激光脉冲引导的影响。结果表明,激光脉冲在等离子体通道中的引导取决于脉冲轮廓,在特定条件下,脉冲在非均质等离子体通道中的光斑尺寸变化最小。研究表明,通道深度和初始激光光斑尺寸对脉冲引导非常有效,随着这些参数值的增加,脉冲引导效果会更好。此外,研究结果表明,激光脉冲的引导与三种不同的初始条件所代表的等离子体不均匀性类型有关,因为在抛物线等离子体通道中考虑非线性轴向不均匀性比轴向均匀和线性轴向等离子体密度剖面更容易收敛。
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来源期刊
Optik
Optik 物理-光学
CiteScore
6.90
自引率
12.90%
发文量
1471
审稿时长
46 days
期刊介绍: Optik publishes articles on all subjects related to light and electron optics and offers a survey on the state of research and technical development within the following fields: Optics: -Optics design, geometrical and beam optics, wave optics- Optical and micro-optical components, diffractive optics, devices and systems- Photoelectric and optoelectronic devices- Optical properties of materials, nonlinear optics, wave propagation and transmission in homogeneous and inhomogeneous materials- Information optics, image formation and processing, holographic techniques, microscopes and spectrometer techniques, and image analysis- Optical testing and measuring techniques- Optical communication and computing- Physiological optics- As well as other related topics.
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