Polarized pion-deuteron breakup in the region of the 3,3 resonance

Research output: Contribution to journalArticle

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Abstract

The vector analyzing power iT11 for pion-deuteron breakup has been calculated at three different energies in the region of the 3,3 resonance and compared with recent data. The calculations have been performed using the relativistic Faddeev theory proposed by the author. The relationship of this theory to other formalisms is discussed, as well as the implications of our results to the question of the existence or nonexistence of dibaryon resonances. © 1987 The American Physical Society.
Original languageAmerican English
Pages (from-to)1820-1822
Number of pages1637
JournalPhysical Review C
DOIs
StatePublished - 1 Jan 1987
Externally publishedYes

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Mesons
Deuterium
deuterons
pions
energy

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title = "Polarized pion-deuteron breakup in the region of the 3,3 resonance",
abstract = "The vector analyzing power iT11 for pion-deuteron breakup has been calculated at three different energies in the region of the 3,3 resonance and compared with recent data. The calculations have been performed using the relativistic Faddeev theory proposed by the author. The relationship of this theory to other formalisms is discussed, as well as the implications of our results to the question of the existence or nonexistence of dibaryon resonances. {\circledC} 1987 The American Physical Society.",
author = "Humberto Garcilazo",
year = "1987",
month = "1",
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doi = "10.1103/PhysRevC.35.1820",
language = "American English",
pages = "1820--1822",
journal = "Physical Review C",
issn = "0556-2813",
publisher = "American Physical Society",

}

Polarized pion-deuteron breakup in the region of the 3,3 resonance. / Garcilazo, Humberto.

In: Physical Review C, 01.01.1987, p. 1820-1822.

Research output: Contribution to journalArticle

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AB - The vector analyzing power iT11 for pion-deuteron breakup has been calculated at three different energies in the region of the 3,3 resonance and compared with recent data. The calculations have been performed using the relativistic Faddeev theory proposed by the author. The relationship of this theory to other formalisms is discussed, as well as the implications of our results to the question of the existence or nonexistence of dibaryon resonances. © 1987 The American Physical Society.

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