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Gamma-ray vortices from nonlinear inverse Thomson scattering of circularly polarized light

机译:圆偏振光的非线性汤姆森逆散射引起的伽马射线涡旋

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摘要

Inverse Thomson scattering is a well-known radiation process that produces high-energy photons both in nature and in the laboratory. Nonlinear inverse Thomson scattering occurring inside an intense light field is a process which generates higher harmonic photons. In this paper, we theoretically show that the higher harmonic gamma-ray produced by nonlinear inverse Thomson scattering of circularly polarized light is a gamma-ray vortex, which means that it possesses a helical wave front and carries orbital angular momentum. Our work explains a recent experimental result regarding nonlinear inverse Thomson scattering that clearly shows an annular intensity distribution as a remarkable feature of a vortex beam. Our work implies that gamma-ray vortices should be produced in various situations in astrophysics in which high-energy electrons and intense circularly polarized light fields coexist. Nonlinear inverse Thomson scattering is a promising radiation process for realizing a gamma-ray vortex source based on currently available laser and accelerator technologies, which would be an indispensable tool for exploring gamma-ray vortex science.
机译:汤姆森反散射是一种众所周知的辐射过程,在自然界和实验室中都会产生高能光子。在强光场内发生的非线性汤姆森逆散射是产生高次谐波光子的过程。在理论上,我们证明圆偏振光的非线性汤姆逊逆散射所产生的高次谐波伽马射线是伽马射线旋涡,这意味着它具有螺旋波前并带有轨道角动量。我们的工作解释了有关非线性逆Thomson散射的最新实验结果,该结果清楚地表明环形强度分布是涡旋光束的显着特征。我们的工作意味着,在高能电子和强圆偏振光场共存的天体物理学中,应在各种情况下产生伽马射线涡旋。非线性汤姆逊逆散射是一种基于当前可用的激光和加速器技术的,用于实现伽玛射线涡旋源的有希望的辐射过程,它将是探索伽玛射线涡旋科学必不可少的工具。

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