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Non-resonant dynamic stark control of vibrational motion with optimized laser pulses

机译:通过优化的激光脉冲对振动运动进行非共振动态完全控制

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摘要

The term dynamic Stark control (DSC) has been used to describe methods of quantum control related to the dynamic Stark effect, i.e., a time-dependent distortion of energy levels. Here, we employ analytical models that present clear and concise interpretations of the principles behind DSC. Within a linearly forced harmonic oscillator model of vibrational excitation, we show how the vibrational amplitude is related to the pulse envelope, and independent of the carrier frequency of the laser pulse, in the DSC regime. Furthermore, we shed light on the DSC regarding the construction of optimal pulse envelopes - from a time-domain as well as a frequency-domain perspective. Finally, in a numerical study beyond the linearly forced harmonic oscillator model, we show that a pulse envelope can be constructed such that a vibrational excitation into a specific excited vibrational eigenstate is accomplished. The pulse envelope is constructed such that high intensities are avoided in order to eliminate the process of ionization. Published by AIP Publishing.
机译:术语动态斯塔克控制(DSC)已被用来描述与动态斯塔克效应有关的量子控制方法,即能量水平随时间的畸变。在这里,我们采用分析模型,这些模型对DSC背后的原理进行了清晰简洁的解释。在振动激励的线性强制谐波振荡器模型中,我们展示了在DSC体制中,振动幅度如何与脉冲包络相关,并且与激光脉冲的载波频率无关。此外,我们从时域和频域的角度对DSC的最佳脉冲包络的构造进行了阐述。最后,在超出线性强制谐波振荡器模型的数值研究中,我们表明可以构建脉冲包络,从而实现将振动激发成特定的激发振动本征态。脉冲包络被构造为避免高强度,以便消除电离过程。由AIP Publishing发布。

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