Pion-deuteron breakup in the region of the (3,3) resonance

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Abstract

A relativistic Faddeev calculation of the pion-deuteron breakup reactions in the region of the (3, 3) resonance has been performed, using as input all the S- and P-wave pion-nucleon and S-wave nucleon-nucleon channels, as well as treating relativistically both the spin and the space variables. Theoretical predictions for the energy dependence of the integrated breakup cross sections, and for the differential cross section of the kinematically complete experiment at 228 MeV, are compared with available data. © 1982 The American Physical Society.
Original languageAmerican English
Pages (from-to)577-580
Number of pages518
JournalPhysical Review Letters
DOIs
StatePublished - 1 Jan 1982

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Mesons
Deuterium
S waves
deuterons
pions
cross sections
P waves
predictions
Nucleons
energy

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title = "Pion-deuteron breakup in the region of the (3,3) resonance",
abstract = "A relativistic Faddeev calculation of the pion-deuteron breakup reactions in the region of the (3, 3) resonance has been performed, using as input all the S- and P-wave pion-nucleon and S-wave nucleon-nucleon channels, as well as treating relativistically both the spin and the space variables. Theoretical predictions for the energy dependence of the integrated breakup cross sections, and for the differential cross section of the kinematically complete experiment at 228 MeV, are compared with available data. {\circledC} 1982 The American Physical Society.",
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Pion-deuteron breakup in the region of the (3,3) resonance. / Garcilazo, Humberto.

In: Physical Review Letters, 01.01.1982, p. 577-580.

Research output: Contribution to journalArticle

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AB - A relativistic Faddeev calculation of the pion-deuteron breakup reactions in the region of the (3, 3) resonance has been performed, using as input all the S- and P-wave pion-nucleon and S-wave nucleon-nucleon channels, as well as treating relativistically both the spin and the space variables. Theoretical predictions for the energy dependence of the integrated breakup cross sections, and for the differential cross section of the kinematically complete experiment at 228 MeV, are compared with available data. © 1982 The American Physical Society.

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