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Coherent multidimensional spectroscopy of dilute gas-phase nanosystems

机译:稀气相纳米系统的相干多维光谱

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摘要

Two-dimensional electronic spectroscopy (2DES) is one of the most powerful spectroscopic techniques with unique sensitivity to couplings, coherence properties and real-time dynamics of a quantum system. While successfully applied to a variety of condensed phase samples, high precision experiments on isolated systems in the gas phase have been so far precluded by insufficient sensitivity. However, such experiments are essential for a precise understanding of fundamental mechanisms and to avoid misinterpretations. Here, we solve this issue by extending 2DES to isolated nanosystems in the gas phase prepared by helium nanodroplet isolation in a molecular beam-type experiment. This approach uniquely provides high flexibility in synthesizing tailored, quantum state-selected model systems of single and many-body character. In a model study of weakly-bound Rb2 and Rb3 molecules we demonstrate the method’s unique capacity to elucidate interactions and dynamics in tailored quantum systems, thereby also bridging the gap to experiments in ultracold quantum science.
机译:二维电子光谱(2DES)是最强大的光谱技术之一,对量子系统的耦合,相干特性和实时动力学具有独特的敏感性。虽然成功地应用于各种冷凝相样品,但迄今为止,由于灵敏度不足,无法在气相中对分离的系统进行高精度实验。但是,这样的实验对于准确理解基本机制和避免误解是必不可少的。在这里,我们通过在分子束型实验中将2DES扩展到通过氦纳米液滴分离制备的气相分离纳米系统来解决此问题。这种方法在合成定制的单体和多体特征的量子状态选择模型系统中具有独特的高度灵活性。在对弱结合的Rb2和Rb3分子的模型研究中,我们证明了该方法具有独特的能力,可以阐明量身定制的量子系统中的相互作用和动力学,从而弥合超冷量子科学中的实验空白。

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