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首页> 外文期刊>Physical review letters >Ultrarelativistic Electron-Beam Polarization in Single-Shot Interaction with an Ultraintense Laser Pulse
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Ultrarelativistic Electron-Beam Polarization in Single-Shot Interaction with an Ultraintense Laser Pulse

机译:超强激光脉冲单次相互作用中的超相对论电子束极化

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摘要

Spin polarization of an ultrarelativistic electron beam head-on colliding with an ultraintense laser pulse is investigated in the quantum radiation-dominated regime. We develop a Monte Carlo method to model electron radiative spin effects in arbitrary electromagnetic fields by employing spin-resolved radiation probabilities in the local constant field approximation. Because of spin-dependent radiation reaction, the applied elliptically polarized laser pulse polarizes the initially unpolarized electron beam and splits it along the propagation direction into two oppositely transversely polarized parts with a splitting angle of about tens of milliradians. Thus, a dense electron beam with above 70% polarization can be generated in tens of femtoseconds with realistic laser pulses. The proposed method demonstrates a way for relativistic electron beam polarization with currently achievable laser facilities.
机译:在量子辐射为主的体系中研究了超相对论电子束与超强激光脉冲正面碰撞的自旋极化。我们开发了一种蒙特卡罗方法,通过在局部恒定场近似中利用自旋分辨辐射概率来模拟任意电磁场中的电子辐射自旋效应。由于自旋相关的辐射反应,所施加的椭圆偏振激光脉冲使最初未偏振的电子束偏振,并将其沿传播方向分裂为两个相对的横向偏振部分,其分裂角约为数十毫弧度。因此,利用实际的激光脉冲,可以在数十飞秒内产生极化强度高于70%的密集电子束。所提出的方法展示了利用目前可实现的激光设备进行相对论电子束极化的方法。

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