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Nondispersive two-electron wave packets in driven helium

机译:驱动氦气中的非色散双电子波包

摘要

We provide a detailed quantum treatment of the spectral characteristics and of the dynamics of nondispersive two-electron wave packets along the periodically driven, collinear frozen planet configuration of helium. These highly correlated, long-lived wave packets arise as a quantum manifestation of regular islands in a mixed classical phase space, which are induced by nonlinear resonances between the external driving and the unperturbed dynamics of the frozen-planet configuration. Particular emphasis is given to the dependence of the ionization rates of the wave packet states on the driving field parameters and on the quantum mechanical phase space resolution, preceded by a comparison of 1D and 3D life times of the unperturbed frozen planet. Furthermore, we study the effect of a superimposed static electric field component, which, on the grounds of classical considerations, is expected to stabilize the real 3D dynamics against large (and possibly ionizing) deviations from collinearity.
机译:我们对沿周期性驱动的共线氦冷冻行星结构的氦的光谱特性和非色散双电子波包动力学进行了详细的量子处理。这些高度相关的长寿命波包以混合经典相空间中规则岛的量子表现形式出现,这是由外部驱动力与冻结行星配置的无扰动动力学之间的非线性共振引起的。特别强调波包状态的电离速率对驱动场参数和量子力学相空间分辨率的依赖性,然后比较未受扰动的冰冻行星的1D和3D寿命。此外,我们研究了叠加的静电场分量的影响,这是基于经典考虑而来的,可以稳定真实的3D动力学,以防止与共线性的大(且可能是电离)偏差。

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