Measurements of the production of ultralong-range Rydberg dimers through photoassocation in an ultracold atomic gas are reported. The molecular potential associated with the Rydberg state is anisotropic and the molecular states are characterized by the vibrational quantum number and the total angular momentum , where and are the electronic orbital angular momentum and rotational angular momentum, respectively. The measured molecular binding energies agree reasonably well with theoretical predictions. Additionally, the electron-atom scattering leads to broader line shapes in the photoassociation spectrum than might be expected simply from the angular momentum of the initial colliding cold-atom pairs.
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This content will become publicly available on July 1, 2027
Polarization observables T and F in the γp→π0p reaction at CLAS
Pion photoproduction in the reaction has been measured in the FROzen Spin Target (FROST) experiment at the Thomas Jefferson National Accelerator Facility. In this experiment, circularly polarized photons with energies up to 3.082 GeV impinged on a transversely polarized frozen-spin target. Final-state protons were detected in the Continuous Electron Beam Accelerator Facility (CEBAF) Large Acceptance Spectrometer. The polarization observables and have been extracted for from 1445 to 2525 MeV, of which the energy range is much broader, and the precision is better than the existing measurements in higher ranges. The data generally agree with predictions of present partial-wave analyses but also show marked differences for higher ranges. By incorporating the present data into the databases, the Scattering Analysis Interactive Data (SAID) fits have been improved with relatively small and significant changes in the parameters of the and have been found with the JüBo model.
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- Award ID(s):
- 2310067
- PAR ID:
- 10698834
- Author(s) / Creator(s):
- ; ; ; ; ; ; ; ; ; ; ; ; ; ; ; ; ; ; ; more »
- Publisher / Repository:
- Physical Review C
- Date Published:
- Journal Name:
- Physical Review C
- Volume:
- 114
- Issue:
- 1
- ISSN:
- 2469-9985
- Format(s):
- Medium: X
- Sponsoring Org:
- National Science Foundation
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