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Attenuation of waveguide modes in narrow metal capillaries

机译:窄金属毛细管中的波导模式的衰减

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The channeling of laser pulses in waveguides filled with a rare plasma is one of the promising techniques of laser wakefield acceleration. A solid-state capillary can precisely guide tightly focused pulses. Regardless of the material of the capillary, its walls behave like a plasma under the influence of a high-intensity laser pulse. Therefore, the waveguide modes in the capillaries have a universal structure, which depends only on the shape of the cross-section. Due to the large ratio of the capillary radius to the laser wavelength, the modes in circular capillaries differ from classical TE and TM modes. We consider the structure of capillary modes in a circular capillary, calculate the attenuation rates, discuss the mode expansion of the incident pulse using minimal simplifications, and analyze the accuracy of commonly used approximations. The attenuation length for such modes is two orders of magnitude longer than that obtained from the classical formula, and the incident pulse of the proper radius can transfer up to 98% of its initial energy to the fundamental mode. However, finding eigenmodes in capillaries of arbitrary cross-sections is a complex mathematical problem that remains to be solved. (C) 2020 Optical Society of America
机译:激光脉冲在填充稀有等离子体的波导中的沟道化是激光尾场加速的一种很有前途的技术。固态毛细管可以精确引导紧密聚焦的脉冲。不管毛细管的材料是什么,它的管壁在高强度激光脉冲的影响下就像等离子体一样。因此,毛细管中的波导模式具有通用结构,这仅取决于横截面的形状。由于毛细管半径与激光波长的比值较大,圆形毛细管中的模式不同于经典的TE和TM模式。我们考虑圆形毛细管中的毛细管模的结构,计算衰减率,用最小的简化讨论入射脉冲的模式展开,并分析常用近似的精度。这种模式的衰减长度比经典公式的衰减长度长两个数量级,适当半径的入射脉冲可以将高达98%的初始能量转移到基本模式。然而,在任意截面的毛细管中寻找本征模是一个复杂的数学问题,仍有待解决。(C) 2020美国光学学会

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