The Relativistic Three-Body Bound State in Three-Dimensions
Nuclear Theory
2016-04-20 v1
Abstract
Studying of the relativistic three-body bound state in a three-dimensional (3D) approach is a necessary first step in a process to eventually perform scattering calculations at GeV energies, where partial-wave expansions are not useful. To this aim we recently studied relativistic effects in the binding energy and for the first time, obtained the relativistic 3B wave function \cite{Hadizadeh_PRC90}. The relativistic Faddeev integral equations for the bound state are formulated in terms of momentum vectors, and relativistic invariance is incorporated within the framework of Poincar\'e invariant quantum mechanics.
Cite
@article{arxiv.1508.04840,
title = {The Relativistic Three-Body Bound State in Three-Dimensions},
author = {M. R. Hadizadeh and Ch. Elster and W. N. Polyzou},
journal= {arXiv preprint arXiv:1508.04840},
year = {2016}
}
Comments
Contribution to the 21st International Conference on Few-Body Problems in Physics, Chicago, Illinois, USA