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ID:
372201.0,
MPI für Gravitationsphysik / Laser Interferometry & Gravitational Wave Astronomy |
Core effects on the polarization of optical Rydberg transitions following electron capture into slow, highly ionized neon recoil ions |
Authors: | Lembo, L. J.; Danzmann, Karsten; Stoller, Ch.; Meyerhof, W. E.; Hansch, T. W. | Date of Publication (YYYY-MM-DD): | 1988-02 | Title of Journal: | Physical Review A | Volume: | 37 | Issue / Number: | 4 | Start Page: | 1141 | End Page: | 1151 | Review Status: | not specified | Audience: | Not Specified | Abstract / Description: | Polarization measurements have been performed and emission spectra in the visible and near ultraviolet have been acquired for transitions between Rydberg states of slow, highly charged neon ions (Neq+, with q=10–5, and v≊0.09 a.u.), following electron capture from Na. Resolvable line splittings appear in those spectra for which the incoming projectile ions carry L-shell core electrons. The optical emission cross sections are much smaller for these ions and the radiation is significantly depolarized relative to those ions whose transitions are seen as structureless. These effects are attributed to the inhibition of Stark mixing by core interactions. | External Publication Status: | published | Document Type: | Article |
Communicated by: | Karsten Danzmann | Affiliations: | MPI für Gravitationsphysik/Laser Interferometry & Gravitational Wave Astronomy MPI für Gravitationsphysik/Teilinstitut Hannover
| External Affiliations: | Department of Physics, Stanford University, Stanford, California 94305-4060
| Identifiers: | URL:http://link.aps.org/abstract/PRA/v37/p1141 ISSN:1094-1622 DOI:10.1103/PhysRevA.37.1141 |
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