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Effect of electron correlation on high-order-harmonic generation of helium atoms in intense laser fields: Time-dependent generalized pseudospectral approach in hyperspherical coordinates

机译:电子相关性对强激光场中氦原子高次谐波产生的影响:超球面坐标中随时间变化的广义伪谱方法

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摘要

We present a time-dependent generalized pseudospectral (TDGPS) approach in hyperspherical coordinates for fully ab initio nonperturbative treatment of multiphoton dynamics of atomic systems in intense laser fields. The procedure is applied to the investigation of high-order-harmonic generation (HHG) of helium atoms in ultrashort laser pulses at a KrF wavelength of 248.6 nm. The six-dimensional coupled hyperspherical-adiabatic-channel equations are discretized and solved efficiently and accurately by means of the TDGPS method. The effects of electron correlation and doubly excited states on HHG are explored in detail. A HHG peak with Fano line profile is identified which can be attributed to a broad resonance of doubly excited states. Comparison of the HHG spectra of the ab initio two-electron and the single-active-electron model calculations is also presented.
机译:我们在超球坐标系中提出了一种时变广义伪谱(TDGPS)方法,用于在强激光场中对原子系统的多光子动力学进行完全从头开始的非扰动处理。该程序用于研究在KrF波长为248.6 nm的超短激光脉冲中氦原子的高次谐波生成(HHG)。利用TDGPS方法离散化了六维耦合的超球面绝热通道方程,并进行了有效而准确的求解。详细探讨了电子相关性和双激发态对HHG的影响。鉴定出具有法诺线轮廓的HHG峰,其可归因于双激发态的宽共振。还给出了从头算两电子模型和单活性电子模型计算的HHG光谱的比较。

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