Estimate of Multi-Shot Laser-Induced Polarization for High Energy Electrons

Katherine D. Ranjbar, Emily Snyder, Alice Snyder, Vahid H. Ranjbar
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Abstract

The use of an intense ultrashort laser pulse to induce electron polarization has been proposed in existing literature. The Python programming language is used to recreate the local constant crossed-field approximation (LCFA) with the aim of determining values for transverse polarization given a nonzero initial polarization. It has been shown that over multiple laser shots, lower values of the quantum efficiency parameter are associated with higher transverse polarization output, yet require a greater number of shots to attain maximal polarization. Moreover, the quantum efficiency parameter has been redefined as a function of intensity for a Ti:sapphire laser necessary to induce polarization in the Electron-Ion Collide
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高能电子的多束激光诱导极化估计
现有文献已经提出了使用强超短激光脉冲诱导电子极化的方法。利用 Python 编程语言重新创建了局部恒定交叉场近似(LCFA),目的是在初始极化不为零的情况下确定横向极化值。研究表明,在多次激光照射中,量子效率参数值越低,横向极化输出越高,但需要更多的照射次数才能达到最大极化。此外,量子效率参数已被重新定义为电子-离子对撞中诱导极化所需的钛:蓝宝石激光强度的函数。
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