论文标题

通过超明式激光脉冲产生极化粒子梁

Production of polarized particle beams via ultraintense laser pulses

论文作者

Sun, Ting, Zhao, Qian, Xue, Kun, Lu, Zhi-Wei, Ji, Liang-Liang, Wan, Feng, Wang, Yu, Salamin, Yousef I., Li, Jian-Xing

论文摘要

高能自旋偏振电子,正电子和$γ$ - 光束在研究材料特性,核结构,颗粒物理和高能天体物理学的研究中具有许多重要的应用。因此,这种极化光束的有效产生吸引了广泛的研究兴趣。这主要是由超轻和超轻激光技术的快速进步驱动的。当前可用的激光脉冲可以在$ 10^{22} -10^{23} $ wcm $^{ - 2} $的范围内实现峰值强度,并具有数十秒钟的脉冲持续时间。可用强度的激光场中颗粒的动力学以量子电动力学(QED)为主,相互作用机制已达到非线性多光子吸收(强场QED过程)所跨越的范围。在强场QED过程中,散射横截面显然取决于颗粒的自旋和极化,并且依赖自旋的光子发射和辐射反应效应可用于产生偏光颗粒。超明式激光驱动的极化粒子具有高泡沫和紧凑性的优势,这可能为一系列研究中未开发的方面开辟道路。在这项工作中,我们简要回顾了对强场QED过程中极化效应的研究的开创性结论,以及最近通过激光束或激光 - 上皮相互作用而产生偏振粒子的进展。

High-energy spin-polarized electron, positron, and $γ$-photon beams have many significant applications in the study of material properties, nuclear structure, particle physics, and high-energy astrophysics. Thus,efficient production of such polarized beams attracts a broad spectrum of research interests. This is driven mainly by the rapid advancements in ultrashort and ultraintense laser technology. Currently available laser pulses can achieve peak intensities in the range of $10^{22}-10^{23}$ Wcm$^{-2}$, with pulse durations of tens of femtoseconds. The dynamics of particles in laser fields of the available intensities is dominated by quantum electrodynamics (QED) and the interaction mechanisms have reached regimes spanned by nonlinear multiphoton absorbtion (strong-field QED processes). In strong-field QED processes, the scattering cross sections obviously depend on the spin and polarization of the particles, and the spin-dependent photon emission and the radiation-reaction effects can be utilized to produce the polarized particles. An ultraintense laser-driven polarized particle source possesses the advantages of high-brilliance and compactness, which could open the way for the unexplored aspects in a range of researches. In this work, we briefly review the seminal conclusions from the study of the polarization effects in strong-field QED processes, as well as the progress made by recent proposals for production of the polarized particles by laser-beam or laser-plasma interactions.

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