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Angular momentum of radiation at axial channeling

机译:轴向窜动时的辐射角动量

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摘要

We study theoretically the angular momentum of radiation emitted at axial channeling of the fast particles in a crystal or in a bunch of micro- or nanotubes placed in strong magnetic field. It is shown that high energy particles channeled in the presence of magnetic field are effective source of vortex radiation in the X-ray and gamma range of photons energies. We show that there are two factors that increase the angular momentum of emitted radiation in the presence of magnetic field. First, the magnetic field favours additional "twisting" of the channeled particles in a certain direction and, secondly, the particles that have the corresponding initial angular momentum are predominantly captured into the channeling mode. Dependence of the angular momentum of radiation on the value of magnetic field and on the incident angle is studied.
机译:我们从理论上研究了晶体或处于强磁场中的一堆微米或纳米管中快速粒子的轴向通道处发射的辐射角动量。结果表明,在磁场存在下引导的高能粒子是X射线和光子能量的γ范围内涡旋辐射的有效来源。我们表明有两个因素会在存在磁场的情况下增加发射辐射的角动量。首先,磁场有利于通道颗粒在特定方向上的附加“扭曲”,其次,具有相应初始角动量的颗粒主要被捕获为通道模式。研究了辐射角动量对磁场值和入射角的依赖性。

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