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Probing Torsional Tunneling in Al2H4 via Anion Photoelectron Spectroscopy
Rui Zhang1, Qihan Liu1, Jiayi Chen1
1Department of Physics, State Key Laboratory of Low Dimensional Quantum Physics, Frontier Science Center for Quantum Information, Tsinghua University, Beijing 100084, China.
Abstract:
This study investigates the tunneling dynamics associated with the torsional transition in the Al2H4 molecule by photodetaching its anionic counterpart, Al2H4-. The stable structure of Al2H4- exhibits D2h symmetry, whereas neutral Al2H4 adopts a D2d symmetric configuration. According to the Franck-Condon principle, the tunneling dynamics across the torsional barrier in Al2H4 can be directly probed through the high-resolution photoelectron spectroscopy of Al2H4- anions. Our Franck-Condon factor simulations, based on solutions to the Mathieu equation that incorporate tunneling effects, successfully reproduce the experimental observations. The approach presented here is also applicable to other molecular systems involving intramolecular torsion.
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