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Spin-polarization effects of an ultrarelativistic electron beam in an ultraintense two-color laser pulse

机译:超弧形电子束在超朗双色激光脉冲中的旋转偏振效应

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摘要

Spin-polarization effects of an ultrarelativistic electron beam head-on colliding with an ultraintense two-color laser pulse are investigated comprehensively in the quantum radiation-dominated regime. We employ a Monte Carlo method, derived from the recent work of Li et al. [Phys. Rev. Lett. 122, 154801 (2019)], to calculate the spin-resolved electron dynamics and photon emissions in the local constant field approximation. We find that electron radiation probabilities in adjacent half cycles of a two-color laser field are substantially asymmetric due to the asymmetric field strengths and, consequently, after interaction the electron beam can obtain a total polarization of about 11% and a partial polarization of up to about 63% because of radiative spin effects, with currently achievable laser facilities, which may be utilized in high-energy physics and nuclear physics. Moreover, the considered effects are shown to be crucially determined by the relative phase of the two-color laser field and robust with respect to other laser and electron-beam parameters.
机译:在量子辐射主导的状态下,全面地研究了UtraraTivistic Electron Elector-On与超温激光脉冲的旋转偏振效应。我们采用了蒙特卡罗方法,源自Li等人的最近工作。 [物理。 rev. lett。 122,154801(2019)],计算局部恒定场近似下的旋转分辨的电子动力学和光子发射。我们发现,由于不对称的场强,在双色激光场的相邻半周期中的电子辐射概率基本上是不对称的,因此在相互作用后,电子束可以获得约11%的总偏振和up偏极由于辐射旋转效果约63%,具有目前可实现的激光设施,可用于高能能物理和核物理学。此外,所考虑的效果被认为是由双色激光场的相对相位和相对于其他激光器和电子束参数的鲁棒相对的效果。

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