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Single and two-photon infrared laser spectroscopy of selected negative ions

Abstract

Atomic negative ions that primarily utilize resonantly enhanced two-photon detachment or single-photon tunable laser spectroscopy are investigated. A search for the 6s6p state of Cs-, which is of opposite parity to the ground state is conducted yielding evidence for an unbound level. The M1 transition in Te- which verifies the feasibility of using magnetic dipole transitions is demonstrated. Finally, a brief progress report on the ongoing tunable infrared laser experiments aimed at large improvements in binding energy determinations in a variety of negative ions, including those of Si, Ni, Cu, Pd, and Co is presented.

Authors

Scheer M; Brodie CA; Bilodeau RC; Haugen HK

Volume

12

Pagination

pp. 217-218

Publication Date

January 1, 1997

Conference proceedings

Conference on Quantum Electronics and Laser Science QELS Technical Digest Series

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