Revealing a full quantum ladder by nonlinear spectroscopy

D. Abramavičius
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引用次数: 4

Abstract

Coherent two-dimensional spectroscopy in IR or visible region is very effective for studying correlations, energy relaxation/transfer pathways in complex multi-chromophore or multi-mode systems. However it is usually restricted up to two-quanta excitations and their properties. In this paper an arbitrary level of excitation is suggested as the utility to scan nonlinear potential surfaces of quantum systems up to a desired excitation degree. This can be achieved by a simple three-pulse laser spectroscopy approach. Accurate evaluation of high-level anharmonicities as well as transition amplitudes can be directly obtained. Additionally, questions regarding the quantum nature of the probed system can be addressed by studying absolute peak positions.
用非线性光谱学揭示全量子阶梯
红外或可见光区相干二维光谱对于研究复杂的多色团或多模系统中的相关关系、能量弛豫/转移途径是非常有效的。然而,它通常仅限于双量子激发及其性质。本文提出了一种利用任意激励水平扫描量子系统的非线性势面达到所需激励程度的方法。这可以通过简单的三脉冲激光光谱方法来实现。可以直接获得高阶非调和度和过渡幅值的准确评价。此外,关于被探测系统的量子性质的问题可以通过研究绝对峰位置来解决。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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