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Feshbach Resonances in Cold Collisions: Benchmarking State-of-the-Art Ab Initio Potential Energy Surfaces.


ABSTRACT: High-quality potential energy surfaces (PESs) are prerequisites for quantitative atomistic simulations with both quantum and classical dynamics approaches. The ultimate test for the validity of a PES entails comparisons with judiciously chosen experimental observables. Here we ask whether cold collision measurements are sufficiently informative to validate and distinguish between high-level, state-of-the art PESs for the strongly interacting Ne-H2+ system. We show that measurement of the final state distributions for a process that involves several metastable intermediate states is sufficient to identify the PES that captures the long-range interactions properly. Furthermore, we show that a modest increase in the experimental energy resolution will allow for resolving individual Feshbach resonances and enable a quantitative probe of the interactions in the short and intermediate ranges.

SUBMITTER: Horn KP 

PROVIDER: S-EPMC12337136 | biostudies-literature | 2025 Aug

REPOSITORIES: biostudies-literature

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Feshbach Resonances in Cold Collisions: Benchmarking State-of-the-Art Ab Initio Potential Energy Surfaces.

Horn Karl P KP   Upadhyay Meenu M   Margulis Baruch B   Reich Daniel M DM   Narevicius Edvardas E   Meuwly Markus M   Koch Christiane P CP  

The journal of physical chemistry letters 20250727 31


High-quality potential energy surfaces (PESs) are prerequisites for quantitative atomistic simulations with both quantum and classical dynamics approaches. The ultimate test for the validity of a PES entails comparisons with judiciously chosen experimental observables. Here we ask whether cold collision measurements are sufficiently informative to validate and distinguish between high-level, state-of-the art PESs for the strongly interacting Ne-H<sub>2</sub><sup>+</sup> system. We show that meas  ...[more]

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