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Electron-positron pair production in oscillating electric fields with double-pulse structure

机译:双脉冲结构在振荡电场中产生电子-正电子对

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Electron-positron pair production from vacuum in a strong electric field oscillating in time is studied. The field is assumed to consist of two consecutive pulses, with variable time delay in between. Pair production probabilities are obtained by numerical solution of the corresponding time-dependent Dirac equation. Considering symmetric field configurations comprising two identical pulses, we show that the pulse distance strongly affects the momentum spectra of produced particles and even the total production probability. Conversely, in a highly asymmetric situation when the field contains low-intensity prepulse and high-intensity main pulse, we identify a range of field parameters where the prepulse despite its weakness can leave visible traces in the particle spectra.
机译:研究了在强振荡的真空中由真空产生电子-正电子对的过程。假定该场由两个连续的脉冲组成,其间具有可变的时间延迟。通过对应时间相关的狄拉克方程的数值解获得结对产生概率。考虑到包含两个相同脉冲的对称场配置,我们表明脉冲距离强烈影响所产生颗粒的动量谱,甚至影响总产生概率。相反,在高度不对称的情况下,当场包含低强度的预脉冲和高强度的主脉冲时,我们确定了一系列的场参数,其中,尽管前脉冲较弱,但可以在粒子光谱中留下可见的痕迹。

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