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Strong-field tunneling ionization in the relativistic regime

机译:相对论制度的强大隧道电离

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We study the photoelectron energy and momentum distributions of strong-field tunneling ionization in the relativistic regime. Using the relativistic strong-field approximation, we have derived the position of the tunnel exit, the initial momentum distributions at the tunnel exit, and the instantaneous ionization rate when the electron tunnels through the Coulomb barrier in the relativistic regime. Since the tunneling electron energy is of the order of 1% of the rest of its mass, those nonadiabatic tunneling coordinates are quite different from the nonrelativistic case.We further incorporate the nonadiabatic relativistic tunneling coordinates into the classical trajectoryMonte Carlo model and have calculated photoelectron energy and momentum distributions by accurately considering the field distribution in the focus of relativistic femtosecond laser pulses.We show that the nonadiabatic tunneling effect and the focal field distribution are very crucial to modeling strong-field ionization in the relativistic regime because the quiver radius of electrons can be as large as the beam waist.
机译:我们研究了相对论制度中的强野隧道电离的光电能量和动量分布。使用相对论的强场近似,我们衍生出隧道出口的位置,隧道出口处的初始动量分布,以及当电子隧道通过相对论中的库仑屏障时的瞬时电离速率。由于隧穿电子能量的剩余剩余物质的1%,那些非抗隧道坐标与非椭圆形坐标非常不同。我们还将非等级的相对论隧道坐标进入经典的TraometoryMonte Carlo模型,并计算了光电子能量通过准确地考虑相对论飞秒激光脉冲的焦点的场分布。我们表明,由于电子的颤动半径可以,因此表明,非等级隧道效应和焦距隧道效应和焦距隧道效应和焦田分布非常重要。和梁腰一样大。

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