Holographic Deuteron and Nucleon-Nucleon Potential
Abstract
We compute the potential between a pair of nucleons in the D4-D8 holographic QCD. In the large 't Hooft coupling limit, , the hadronic size of the baryon is small , and their interaction with mesons are well approximated by a set of dimension four and five operators. The nucleon-nucleon potential emerges from one-boson exchange picture involving massless pseudo-scalars and an infinite tower of spin one mesons. We find in particular that meson exchanges are dominated by a dimension five derivative coupling of tensor type, whereas for mesons and axial mesons, such tensor couplings are completely absent. The potential is universally repulsive at short distance, and has the usual long-distance attractive behavior along a isosinglet and spin triplet channel. Both the large form and the finite form are given. In the former, a shallow classical minimum of depth forms at around .
Cite
@article{arxiv.0902.4048,
title = {Holographic Deuteron and Nucleon-Nucleon Potential},
author = {Youngman Kim and Sangmin Lee and Piljin Yi},
journal= {arXiv preprint arXiv:0902.4048},
year = {2010}
}
Comments
33 pages, 4 figures, a preprint number added, typos fixed, a reference added, a minor revision in section 5.3