Bulletin of the American Physical Society
56th Annual Meeting of the APS Division of Atomic, Molecular and Optical Physics
Monday–Friday, June 16–20, 2025; Portland, Oregon
Session E07: Collisions of Atoms and Molecules
8:00 AM–9:48 AM,
Wednesday, June 18, 2025
Oregon Convention Center
Room: E141-142
Chair: Harindranath B. Ambalampitiya, University of Nebraska-Lincoln
Abstract: E07.00002 : Resonant energy transfer between atomic levels of equal parity in low-temperature collisions of Rydberg atoms with polar molecules
8:12 AM–8:24 AM
Presenter:
Stephen Dermot Hogan
(University College London)
Authors:
Stephen Dermot Hogan
(University College London)
Hossein R Sadeghpour
(Harvard - Smithsonian Center for Astrophysics)
Rosario Gonzalez-Ferez
(University de Granada)
Reuben Wang
(ITAMP Center for Astrophysics | Harvard & Smithsonian)
Junwen Zou
(University College London)
Here, we report the observation of a resonant energy transfer process that occurs in low-temperature collisions of Rydberg helium (He) atoms with polar ground state ammonia (NH3) molecules, but cannot proceed at long range. Using an intra-beam collision apparatus with NH3 seeded in a pulsed supersonic beam of He, and a relative translational temperature in the moving frame of reference <100 mK, we observe the resonant transfer of the energy associated with the electric dipole allowed parity-changing transition between the inversion sublevels in the ground electronic state of NH3, to excite Rydberg He atoms from the 1s65s 3S1 level to the equal parity 1s66s 3S1 level. We attribute the occurrence of this process to a combination of the mixing of Rydberg states of opposite parity that occurs when the polar NH3 molecule enters inside the Rydberg electron charge distribution, and a change of angular momentum in the centre-of-mass frame of reference that occurs upon energy transfer. We will describe the experiments in which these observations were made, and the theoretical work carried out to aid in their interpretation.
[1] K. Gawlas and S. D. Hogan, J. Phys. Chem. Lett. 11, 83 (2020)
[2] A. Guttridge, et al. Phys. Rev. Lett. 131, 013401 (2023)
[3] R. González-Férez, J. Shertzer and H. R. Sadeghpour, Phys. Rev. Lett. 126, 043401 (2021)
[4] V. Zhelyazkova et al. Phys. Chem. Chem. Phys. 23, 21606 (2021)
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