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受激布里渊散射实现X射线放大。

X-ray amplification by stimulated Brillouin scattering.

作者信息

Edwards Matthew R, Mikhailova Julia M, Fisch Nathaniel J

机构信息

Department of Mechanical and Aerospace Engineering, Princeton University, Princeton, New Jersey, 08544, USA.

Department of Astrophysical Sciences, Princeton University, Princeton, New Jersey, 08544, USA.

出版信息

Phys Rev E. 2017 Aug;96(2-1):023209. doi: 10.1103/PhysRevE.96.023209. Epub 2017 Aug 25.

Abstract

Plasma-based parametric amplification using stimulated Brillouin scattering offers a route to coherent x-ray pulses orders of magnitude more intense than those of the brightest available sources. Brillouin amplification permits amplification of shorter wavelengths with lower pump intensities than Raman amplification, which Landau and collisional damping limit in the x-ray regime. Analytic predictions, numerical solutions of the three-wave-coupling equations, and particle-in-cell simulations suggest that Brillouin amplification in solid-density plasmas will allow compression of current x-ray free-electron laser pulses to subfemtosecond durations and unprecedented intensities.

摘要

利用受激布里渊散射的基于等离子体的参量放大提供了一条产生相干X射线脉冲的途径,其强度比现有最亮光源的强度高几个数量级。与拉曼放大相比,布里渊放大允许在较低泵浦强度下放大更短波长,而在X射线波段,拉曼放大受到朗道阻尼和碰撞阻尼的限制。解析预测、三波耦合方程的数值解以及粒子模拟表明,固体密度等离子体中的布里渊放大将使当前的X射线自由电子激光脉冲压缩到亚飞秒持续时间并达到前所未有的强度。

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