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Record Details

Record 1 of 40781
Absolute cascade-free cross-sections for the 2S to 2P transition in Zn(+) using electron-energy-loss and merged-beams methods
External Online Source: doi:10.1103/PhysRevLett.67.30
Author and Affiliation:
Smith, Steven J.(Jet Propulsion Lab., California Inst. of Tech., Pasadena, CA, United States)
Man, K.-F.(Jet Propulsion Lab., California Inst. of Tech., Pasadena, CA, United States)
Chutjian, A.(JPL, Pasadena, CA, United States)
Mawhorter, R. J.(Pomona College, Claremont, CA, United States)
Williams, I. D.(Belfast, Queen's University, United Kingdom)
Abstract: Absolute cascade-free excitation cross-sections in an ion have been measured for the resonance 2S to 2P transition in Zn(+) using electron-energy-loss and merged electron-ion beams methods. Measurements were carried out at electron energies of below threshold to 6 times threshold. Comparisons are made with 2-, 5-, and 15-state close-coupling and distorted-wave theories. There is good agreement between experiment and the 15-state close-coupling cross-sections over the energy range of the calculations.
Publication Date: Jul 01, 1991
Document ID:
19910058672
(Acquired Nov 28, 1995)
Accession Number: 91A43295
Subject Category: PLASMA PHYSICS
Document Type: Journal Article
Publication Information: Physical Review Letters (ISSN 0031-9007); 67; 30-33
Publisher Information: United States
Financial Sponsor: NASA; United States
Organization Source: Jet Propulsion Lab., California Inst. of Tech.; Pasadena, CA, United States
Pomona Coll.; Claremont, CA, United States
Queens Univ.; Belfast, United Kingdom
Description: 4p; In English
Distribution Limits: Unclassified; Publicly available; Unlimited
Rights: Copyright
NASA Terms: ATOMIC EXCITATIONS; ELECTRON BEAMS; ELECTRON ENERGY; ELECTRON TRANSITIONS; ION BEAMS; METAL IONS; ZINC; COULOMB COLLISIONS; FARADAY EFFECT; INELASTIC SCATTERING
Imprint And Other Notes: Physical Review Letters (ISSN 0031-9007), vol. 67, July 1, 1991, p. 30-33. Research supported by NASA and NATO.
Miscellaneous Notes: Research supported by NASA and NATO
Availability Source: Other Sources
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