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Observation and modeling of bound–bound and bound-free transitions in Cu2

Title: Observation and modeling of bound–bound and bound-free transitions in Cu2
Authors: Zhang, Q.; Beck, M.; Bornhauser, P.; Knopp, G.; Marquardt, R.; Radi, P. P.
Contributors: Swiss National Science Foundation
Source: The Journal of Chemical Physics ; volume 164, issue 10 ; ISSN 0021-9606 1089-7690
Publisher Information: AIP Publishing
Publication Year: 2026
Description: Laser-induced transitions from the perturbed J0u+, v′=0−2∼G0u+,v′=62−68 system to the X1Σg+(0g+) ground state of dicopper have been investigated experimentally and theoretically. Upon excitation of specific rotational levels, long progressions to vibrational levels are observed. Strong emissions are observed at low vibrational levels. Notably, spectra show significant line strength near and above the asymptotic atom dissociation limit. The latter feature is due to the Condon internal diffraction of bound-free transitions to the continuum region of the ground state. Based on the Rydberg–Klein–Rees potentials for the J0u+, G0u+, and X1Σg+(0g+) states, eigenvalues and wave functions are obtained by solving the radial Schrödinger equation. Hence, frequencies of rovibrational transitions, Franck–Condon factors, and Einstein coefficients for spontaneous emissions are determined. The required transition dipole moment functions are obtained from high-level electronic structure calculations at the multi-reference configuration-interaction level of theory. Simulated line positions and relative intensities for transitions near and above the dissociation limit are in good agreement with the experiment. Furthermore, the feasibility of photoassociation experiments involving ultracold copper atoms is estimated by calculating the coupling rate between the colliding cold atoms and the excited G0u+ state.
Document Type: article in journal/newspaper
Language: English
DOI: 10.1063/5.0312177
DOI: 10.1063/5.0312177/20937752/104309_1_5.0312177.pdf
Availability: https://doi.org/10.1063/5.0312177; https://pubs.aip.org/aip/jcp/article-pdf/doi/10.1063/5.0312177/20937752/104309_1_5.0312177.pdf
Rights: https://creativecommons.org/licenses/by/4.0/
Accession Number: edsbas.A75446B6
Database: BASE