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超快相干控制存在静态电场时的巨型振荡分子偶极子。

Ultrafast coherent control of giant oscillating molecular dipoles in the presence of static electric fields.

机构信息

School of Chemistry (BK21), Seoul National University, Seoul 151-747, South Korea.

出版信息

J Chem Phys. 2013 Aug 28;139(8):084306. doi: 10.1063/1.4818878.

Abstract

We propose a scheme to generate electric dipole moments in homonuclear molecular cations by creating, with an ultrashort pump pulse, a quantum superposition of vibrational states on electronic states strongly perturbed by very strong static electric fields. By field-induced molecular stabilization, the dipoles can reach values as large as 50 Debyes and oscillate on a time-scale comparable to that of the slow vibrational motion. We show that both the electric field and the pump pulse parameters can be used to control the amplitude and period of the oscillation, while preventing the molecule from ionizing or dissociating.

摘要

我们提出了一种通过超短泵浦脉冲在强烈受强静电场干扰的电子态上产生振动态量子叠加的方案,从而在同核分子阳离子中产生电偶极矩。通过场诱导的分子稳定化,偶极矩可以达到 50 德拜,并且在与慢振动运动相当的时间尺度上振荡。我们表明,电场和泵浦脉冲参数都可以用来控制振荡的幅度和周期,同时防止分子电离或离解。

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