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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Direct theoretical method for the determination of peak laser intensities from Freeman resonances in above-threshold ionization
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Direct theoretical method for the determination of peak laser intensities from Freeman resonances in above-threshold ionization

机译:阈上电离中Freeman共振确定峰值激光强度的直接理论方法

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Freeman resonance is one of the most important phenomena in strong-field laser physics. The previous calculations to determine peak laser intensities were mainly based on solving the entire time-dependent Schrodinger equation, which requires tedious theoretical and numerical work. The newly obtained exact solutions to a driven two-level atom made accurate calculations of quasienergies and the Bloch-Siegert shifts with an arbitrary laser-beam intensity possible and practical. With the recent progress in the numerical calculations of driven two-level atom, we find a direct theoretical method, without solving the entire time-dependent Schrodinger equation, to calculate the peak laser intensities which can excite a ground-state electron to a resonant Rydberg state with shifted energy level followed by an above-threshold ionization. Due to the tranquility of the nonresonant Rydberg states, Freeman resonance fits the driven two-level atom theoretical model well. With accurate calculation of Bloch-Siegert shift as a function of laser-beam intensity, we determine the peak laser intensities from Freeman resonances of different Rydberg states. Some important features of Freeman resonances are also discussed with this method.
机译:Freeman共振是强场激光物理学中最重要的现象之一。先前确定峰值激光强度的计算主要基于求解整个与时间相关的薛定inger方程,这需要繁琐的理论和数值工作。新获得的对被驱动的两级原子的精确解对准能量和Bloch-Siegert位移以及任意激光束强度的精确计算都是可行和实用的。随着驱动二能级原子数值计算的最新进展,我们找到了一种直接的理论方法,无需求解整个时变的薛定inger方程,即可计算出可以激发基态电子到共振里德堡的峰值激光强度。能量水平发生变化并处于阈值以上电离状态。由于非共振Rydberg态的宁静,Freeman共振非常适合驱动的两级原子理论模型。通过精确计算Bloch-Siegert位移作为激光束强度的函数,我们可以根据不同里德堡态的Freeman共振确定峰值激光强度。 Freeman共振的一些重要特征也用这种方法进行了讨论。

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