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首页> 外文期刊>Journal of Plasma Physics >Signatures of quantum effects on radiation reaction in laser-electron-beam collisions
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Signatures of quantum effects on radiation reaction in laser-electron-beam collisions

机译:量子效应对激光 - 电子束碰撞中辐射反应的特征

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摘要

Two signatures of quantum effects on radiation reaction in the collision of a similar to GeV electron beam with a high intensity (>3 x 10(20) W cm(-2)) laser pulse have been considered. We show that the decrease in the average energy of the electron beam may be used to measure the Gaunt factor g for synchrotron emission. We derive an equation for the evolution of the variance in the energy of the electron beam in the quantum regime, i.e. quantum efficiency parameter eta (sic) 1. We show that the evolution of the variance may be used as a direct measure of the quantum stochasticity of the radiation reaction and determine the parameter regime where this is observable. For example, stochastic emission results in a 25 % increase in the standard deviation of the energy spectrum of a GeV electron beam, 1 fs after it collides with a laser pulse of intensity 10(21) W cm(-2). This effect should therefore be measurable using current high-intensity laser systems.
机译:已经考虑了与具有高强度(> 3×10(20)Wcm(-2)激光脉冲的类似GEV电子束的辐射反应的量子效应对辐射反应的两个签名。 我们表明,电子束的平均能量的降低可用于测量用于同步发射的手术因子G。 我们从量子环境中的电子束的能量中的变化的演变,即量子效率参数ETA(SiC)1。我们表明差异的演变可以用作量子的直接测量 辐射反应的随机性,并确定可观察到的参数制度。 例如,随机排放导致GEV电子束的能谱的标准偏差增加25%,在碰撞强度10(21)W cm(-2)的激光脉冲中碰撞之后。 因此,应使用电流的高强度激光系统测量这种效果。

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