Production of K*(1300) and K*(1400) resonances in K+p interactions at 3.5 GeV/c
Publication
, Journal Article
Bishop, JM; Goshaw, AT; Erwin, AR; Walker, WD
Published in: Nuclear Physics, Section B
1969
In a recently completed experiment using 3.54 GeV/c K+ mesons in the BNL 80″ chamber, we have investigated the two prong + Vo topology for resonance production. We have found evidence for the K*(1300) with a narrow width with Kππ decay modes and the K*(1400) with Kπ, K*π, Kρ{variant} and Kω decay modes. We present resonance positions, widths, cross sections and branching ratios for these two K* resonances. © 1969.
Duke Scholars
Published In
Nuclear Physics, Section B
ISSN
0550-3213
Publication Date
1969
Volume
9
Issue
3
Start / End Page
403 / 426
Related Subject Headings
- Nuclear & Particles Physics
- 0206 Quantum Physics
- 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics
- 0105 Mathematical Physics
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Bishop, J. M., Goshaw, A. T., Erwin, A. R., & Walker, W. D. (1969). Production of K*(1300) and K*(1400) resonances in K+p interactions at 3.5 GeV/c. Nuclear Physics, Section B, 9(3), 403–426.
Bishop, J. M., A. T. Goshaw, A. R. Erwin, and W. D. Walker. “Production of K*(1300) and K*(1400) resonances in K+p interactions at 3.5 GeV/c.” Nuclear Physics, Section B 9, no. 3 (1969): 403–26.
Bishop JM, Goshaw AT, Erwin AR, Walker WD. Production of K*(1300) and K*(1400) resonances in K+p interactions at 3.5 GeV/c. Nuclear Physics, Section B. 1969;9(3):403–26.
Bishop, J. M., et al. “Production of K*(1300) and K*(1400) resonances in K+p interactions at 3.5 GeV/c.” Nuclear Physics, Section B, vol. 9, no. 3, 1969, pp. 403–26.
Bishop JM, Goshaw AT, Erwin AR, Walker WD. Production of K*(1300) and K*(1400) resonances in K+p interactions at 3.5 GeV/c. Nuclear Physics, Section B. 1969;9(3):403–426.
Published In
Nuclear Physics, Section B
ISSN
0550-3213
Publication Date
1969
Volume
9
Issue
3
Start / End Page
403 / 426
Related Subject Headings
- Nuclear & Particles Physics
- 0206 Quantum Physics
- 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics
- 0105 Mathematical Physics