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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Influence of an axial magnetic field on the density profile of capillary plasma channels
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Influence of an axial magnetic field on the density profile of capillary plasma channels

机译:轴向磁场对毛细管等离子体通道密度分布的影响

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摘要

A narrow capillary plasma channel, with a sizeable depletion of the electron density on the channel axis, has been proposed to guide a laser pulse over a length of several to several tens of centimetres. We discuss the possibility to significantly improve the wave-guiding properties of such a channel by applying an axial magnetic field. Our analytical and numerical studies show that a pulsed axial magnetic field of 10 T in a hydrogen capillary plasma at a pressure of 50 Torr will reduce the on-axis plasma density by a factor of three, and the full width at half maximum of the density profile by a factor of two. The resulting parabolic plasma density profile is expected to be more efficient in guiding laser pulses. [References: 13]
机译:已经提出了一种狭窄的毛细管等离子体通道,其在通道轴上具有相当大的电子密度损耗,以引导激光脉冲的长度在几厘米至几十厘米之间。我们讨论了通过施加轴向磁场来显着改善这种通道的波导特性的可能性。我们的分析和数值研究表明,在氢气毛细管等离子体中以50 Torr的压力产生10 T的脉冲轴向磁场将使轴上等离子体密度降低三倍,并且在密度的最大值的一半处出现整个宽度轮廓的两倍。期望产生的抛物线等离子体密度分布图在引导激光脉冲方面更有效。 [参考:13]

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