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Controlling the high frequency response of H-2 by ultra-short tailored laser pulses: A time-dependent configuration interaction study

机译:通过超短量身定制的激光脉冲控制H-2的高频响应:随时间变化的组态相互作用研究

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摘要

We combine the stochastic pulse optimization (SPO) scheme with the time-dependent configuration interaction singles method in order to control the high frequency response of a simple molecular model system to a tailored femtosecond laser pulse. For this purpose, we use H-2 treated in the fixed nuclei approximation. The SPO scheme, as similar genetic algorithms, is especially suited to control highly non-linear processes, which we consider here in the context of high harmonic generation. Here, we will demonstrate that SPO can be used to realize a "non-harmonic" response of H2 to a laser pulse. Specifically, we will show how adding low intensity side frequencies to the dominant carrier frequency of the laser pulse and stochastically optimizing their contribution can create a high-frequency spectral signal of significant intensity, not harmonic to the carrier frequency. At the same time, it is possible to suppress the harmonic signals in the same spectral region, although the carrier frequency is kept dominant during the optimization. (C) 2016 AIP Publishing LLC.
机译:我们将随机脉冲优化(SPO)方案与时间相关的配置相互作用单方法相结合,以控制简单分子模型系统对定制飞秒激光脉冲的高频响应。为此,我们使用以固定核近似处理的H-2。与类似的遗传算法一样,SPO方案特别适合于控制高度非线性的过程,我们在这里将其视为高次谐波的产生。在这里,我们将证明SPO可用于实现H2对激光脉冲的“非谐波”响应。具体来说,我们将展示如何在激光脉冲的主载波频率上添加低强度边频率并随机优化其贡献,可以创建强度显着的高频频谱信号,而不是载波频率的谐波。同时,尽管在优化过程中载波频率仍占主导地位,但可以抑制相同频谱区域中的谐波信号。 (C)2016 AIP出版有限责任公司。

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