Relativistic effects in the three-nucleon bound-state problem

Research output: Contribution to journalArticle

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Abstract

We calculate the binding energy of tritium using two relativistic versions of the Faddeev equations with separable potentials, and compare with the nonrelativistic results. We find that the relativistic effects increase the binding energy by less than 0.5 MeV. We do our calculations considering only S waves for the two-body interactions, but take into account the tensor force for different values of the deuteron D-state probability. NUCLEAR STRUCTURE Tritium binding energy, relativistic effects. © 1981 The American Physical Society.
Original languageAmerican English
Pages (from-to)559-562
Number of pages502
JournalPhysical Review C
DOIs
StatePublished - 1 Jan 1981

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Tritium
relativistic effects
binding energy
tritium
Deuterium
Faddeev equations
S waves
deuterons
tensors
Nucleons
interactions

Cite this

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title = "Relativistic effects in the three-nucleon bound-state problem",
abstract = "We calculate the binding energy of tritium using two relativistic versions of the Faddeev equations with separable potentials, and compare with the nonrelativistic results. We find that the relativistic effects increase the binding energy by less than 0.5 MeV. We do our calculations considering only S waves for the two-body interactions, but take into account the tensor force for different values of the deuteron D-state probability. NUCLEAR STRUCTURE Tritium binding energy, relativistic effects. {\circledC} 1981 The American Physical Society.",
author = "Humberto Garcilazo",
year = "1981",
month = "1",
day = "1",
doi = "10.1103/PhysRevC.23.559",
language = "American English",
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journal = "Physical Review C",
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publisher = "American Physical Society",

}

Relativistic effects in the three-nucleon bound-state problem. / Garcilazo, Humberto.

In: Physical Review C, 01.01.1981, p. 559-562.

Research output: Contribution to journalArticle

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AB - We calculate the binding energy of tritium using two relativistic versions of the Faddeev equations with separable potentials, and compare with the nonrelativistic results. We find that the relativistic effects increase the binding energy by less than 0.5 MeV. We do our calculations considering only S waves for the two-body interactions, but take into account the tensor force for different values of the deuteron D-state probability. NUCLEAR STRUCTURE Tritium binding energy, relativistic effects. © 1981 The American Physical Society.

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