K-shell x-ray production cross sections of selected elements from Ti to Y for 0.5- to 2.5-MeV alpha-particle bombardment Metadata
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Title
- Main Title K-shell x-ray production cross sections of selected elements from Ti to Y for 0.5- to 2.5-MeV alpha-particle bombardment
Creator
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Author: McDaniel, Floyd Del. (Floyd Delbert), 1942-Creator Type: PersonalCreator Info: University of North Texas
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Author: Gray, Tom J.Creator Type: PersonalCreator Info: University of North Texas
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Author: Gardner, R. K.Creator Type: PersonalCreator Info: University of North Texas
Publisher
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Name: American Physical SocietyPlace of Publication: [College Park, Maryland]
Date
- Creation: 1975-05
Language
- English
Description
- Content Description: This article discusses K-shell x-ray production cross sections of Ti, V, Cr, Fe, Ni, Cu, Zn, Ga, As, Se, Rb, Sr, and Y for 0.5- to 2.5-MeV alpha particles.
- Physical Description: 7 p.
Subject
- Keyword: K-shell
- Keyword: x-ray production
- Keyword: thin targets
- Keyword: alpha-particle bombardment
Source
- Journal: Physical Review A, 1975, College Park: American Physical Society, pp. 1607-1613
Citation
- Publication Title: Physical Review A
- Volume: 11
- Issue: 5
- Page Start: 1607
- Page End: 1613
- Peer Reviewed: True
Collection
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Name: UNT Scholarly WorksCode: UNTSW
Institution
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Name: UNT College of Arts and SciencesCode: UNTCAS
Rights
- Rights Access: public
Resource Type
- Article
Format
- Text
Identifier
- DOI: 10.1103/PhysRevA.11.1607
- Archival Resource Key: ark:/67531/metadc139482
Degree
- Academic Department: Physics
Note
- Display Note: Copyright 1982 American Physical Society. The following article appeared in Physical Review A, 26:4, http://link.aps.org/doi/10.1103/PhysRevA.11.1607
- Display Note: Abstract: K-shell x-ray production cross sections and Kβ/Kα ratios have been measured for thin targets of Ti, V, Cr, Fe, Ni, Cu, Zn, Ga, As, Se, Rb, Sr, and Y for 0.5- to 2.5-MeV alpha particles. The experimental values are compared to the nonrelativistic plane-wave Born approximation (PWBA), the binary-encounter approximation, and the PWBA with binding energy and Coulomb deflection corrections. The PWBA with corrections provides the best agreement with the experimental cross sections.