论文标题

从激光 - 血浆加速器中模拟偏振光梁

Simulation of Polarized Beams from Laser-Plasma Accelerators

论文作者

Hützen, Anna, Thomas, Johannes, Lehrach, Andreas, Rakitzis, T. Peter, Pukhov, Alexander, Ji, Liangliang, Wu, Yitong, Engels, Ralf, Büscher, Markus

论文摘要

两极分化的粒子梁的产生仍然依赖于常规的粒子加速器,这些加速器通常在规模和预算上非常大。在过去的几十年中,基于激光驱动的尾流加速度的概念得到了强烈的提升。尽管在理解基本物理现象方面取得了许多进步,但一个在很大程度上没有探索的问题是粒子旋转如何受到等离子体的巨大磁场的影响,因此,如何产生高度极化的光束。现在,正在追求基于激光 - 等离子的激光 - 基于极化光束的加速器,以此作为来自ForschungszentrumJülich(德国),克里特岛大学(Greece)和中国SIOM Shanghai(中国)的共同努力。作为第一步,我们理论上研究并确定了影响激光 - 血浆加速器中光束极化的机制。然后,我们对气体和箔目标的电子和质子束的加速度进行了一组粒子模拟。我们可以证明,如果采用了高密度的预偏气目标,则可能会产生强烈的极化光束。在这些程序中,我们进一步介绍了HT和HCl气体靶标的质子在激光唤醒场加速期间在很大程度上是保守的,即使质子能进入多GEVEV状态。现在在尤利希(Jülich)建造了电子,质子,迪特龙和$^{3} $ he离子的两极分化来源。 (多)PW激光设施Phelix(GSI Darmstadt)和Sulf(上海)的原则测量证明。

The generation of polarized particle beams still relies on conventional particle accelerators, which are typically very large in scale and budget. Concepts based on laser-driven wake-field acceleration have strongly been promoted during the last decades. Despite many advances in the understanding of fundamental physical phenomena, one largely unexplored issue is how the particle spins are influenced by the huge magnetic fields of plasma and, thus, how highly polarized beams can be produced. The realization of laser-plasma based accelerators for polarized beams is now being pursued as a joint effort of groups from Forschungszentrum Jülich (Germany), University of Crete (Greece), and SIOM Shanghai (China) within the ATHENA consortium. As a first step, we have theoretically investigated and identified the mechanisms that influence the beam polarization in laser-plasma accelerators. We then carried out a set of Particle-in-cell simulations on the acceleration of electrons and proton beams from gaseous and foil targets. We could show that intense polarized beams may be produced if pre-polarized gas targets of high density are employed. In these proceedings we further present that the polarization of protons in HT and HCl gas targets is largely conserved during laser wake-field acceleration, even if the proton energies enter the multi-GeV regime. Such polarized sources for electrons, protons, deuterons and $^{3}$He ions are now being built in Jülich. Proof-of-principle measurements at the (multi-)PW laser facilities PHELIX (GSI Darmstadt) and SULF (Shanghai) are in preparation.

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