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通过关联光子选择性双光子激发一个振动态。

Selective two-photon excitation of a vibronic state by correlated photons.

机构信息

PRESTO, Japan Science and Technology Agency (JST), 4-1-8 Honcho Kawaguchi, Saitama 332-0012, Japan.

出版信息

J Chem Phys. 2011 Mar 28;134(12):124313. doi: 10.1063/1.3573565.

Abstract

We theoretically investigate the two-photon excitation of a molecular vibronic state by correlated photons with energy anticorrelation. A Morse oscillator having three sets of vibronic states is used, as an example, to evaluate the selectivity and efficiency of two-photon excitation. We show that a vibrational mode can be selectively excited with high efficiency by the correlated photons, without phase manipulation or pulse-shaping techniques. This can be achieved by controlling the quantum correlation so that the photon pair concurrently has two pulse widths, namely, a temporally narrow width and a spectrally narrow width. Though this concurrence is seemingly contradictory, we can create such a photon pair by tailoring the quantum correlation between two photons.

摘要

我们从理论上研究了通过能量关联的关联光子对分子振动态的双光子激发。我们使用具有三组振动态的 Morse 振荡器作为示例,来评估双光子激发的选择性和效率。我们表明,通过控制量子关联,可以在不进行相位操纵或脉冲整形技术的情况下,以高效率选择性地激发振动模式,使得光子对同时具有两个脉冲宽度,即时间上的窄宽度和光谱上的窄宽度。尽管这种并发似乎相互矛盾,但我们可以通过调整两个光子之间的量子关联来产生这样的光子对。

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