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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Few-photon electron-positron pair creation in the collision of a relativistic nucleus and an intense x-ray laser beam
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Few-photon electron-positron pair creation in the collision of a relativistic nucleus and an intense x-ray laser beam

机译:相对论核与强X射线激光束碰撞时产生的几个光子电子-正电子对

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We study the nonlinear process of e(-)e(+) pair creation by a nucleus which moves at a relativistic energy in the laboratory frame and collides with an intense x-ray laser beam. The collision system under consideration is chosen in such a way that the simultaneous absorption of at least two photons from the laser wave is required in order to exceed the energy threshold of the reaction. We calculate total and differential rates for both free-free and bound-free pair production. In the case of free-free pair creation we demonstrate the effect of the laser polarization on the spectra of the produced particles, and we show that at very high intensities the total rate exhibits features analogous to those well known from above-threshold ionization rates for atoms. In the case of bound-free pair creation a singularity is found in the laboratory frame angular distribution of the produced positron. This singularity represents a distinct characteristic of the bound-free pair production and allows one to separate this process from free-free pair creation even without detecting a bound state of the captured electron. For both types of pair creation we consider the dependences of the total rates on the collision parameters, give the corresponding scaling laws, and discuss the possibility to observe these nonlinear processes in a future experiment.
机译:我们研究了由原子核产生e(-)e(+)对的非线性过程,该原子核在实验室框架中以相对论能量移动并与强烈的X射线激光束碰撞。选择所考虑的碰撞系统的方式使得需要同时从激光吸收至少两个光子,以超过反应的能量阈值。我们计算自由对和无边界对生产的总和差异率。在产生自由-自由对的情况下,我们证明了激光偏振对产生的粒子光谱的影响,并且我们表明,在非常高的强度下,总速率表现出的特征类似于从阈值以上电离速率众所周知的特征。原子。在产生无界对的情况下,在产生的正电子的实验室框架角度分布中发现了奇异性。这种奇异性代表了自由键对产生的独特特征,即使没有检测到捕获电子的束缚态,也可以使这一过程与自由键对的产生分开。对于两种类型的线对创建,我们都考虑总速率对碰撞参数的依赖性,给出相应的缩放定律,并讨论在将来的实验中观察这些非线性过程的可能性。

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