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Calculations of the Triton Binding Energy with a Lorentz Boosted Nucleon-Nucleon Potential
Conference proceeding   Open access   Peer reviewed

Calculations of the Triton Binding Energy with a Lorentz Boosted Nucleon-Nucleon Potential

H. Kamada, W. Gloeckle, H. Witala, J. Golak, R. Skibinski, W. N. Polyzou and Ch Elster
19TH INTERNATIONAL IUPAP CONFERENCE ON FEW-BODY PROBLEMS IN PHYSICS, Vol.3, p.5025
EPJ Web of Conferences
04/01/2010
DOI: 10.1051/epjconf/20100305025
url
https://doi.org/10.1051/epjconf/20100305025View
Published (Version of record) Open Access

Abstract

We study the binding energy of the three-nucleon system in relativistic models that use two different relativistic treatments of the potential that are phase equivalent to realistic NN interactions. One is based on a unitary scale transformation that relates the non-relativistic center-of-mass Hamiltonian to the relativistic mass (rest energy) operator and the other uses a non-linear equation that relates the interaction in the relativistic mass operator to the non-relativistic interaction. In both cases Lorentz-boosted interactions are used in the relativistic Faddeev equation to solve for the three-nucleon binding energy. Using the same realistic NN potentials as input, the solution of the relativistic three-nucleon Faddeev equation for H-3 shows slightly less binding energy than the corresponding nonrelativistic result. The effect of the Wigner spin rotation on the binding is very small.
Physical Sciences Physics Physics, Nuclear Science & Technology Spectroscopy Technology

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