English

Holographic Deuteron and Nucleon-Nucleon Potential

High Energy Physics - Theory 2010-05-28 v2 Nuclear Theory

Abstract

We compute the potential between a pair of nucleons in the D4-D8 holographic QCD. In the large 't Hooft coupling limit, λ1\lambda \gg 1, the hadronic size of the baryon is small 1/λMKK\sim 1/\sqrt{\lambda}M_{KK}, 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 ρ\rho meson exchanges are dominated by a dimension five derivative coupling of tensor type, whereas for ω\omega mesons and axial mesons, such tensor couplings are completely absent. The potential is universally repulsive 1/r2\sim 1/r^2 at short distance, and has the usual long-distance attractive behavior 1/r3\sim -1/r^3 along a isosinglet and spin triplet channel. Both the large NcN_c form and the finite NcN_c form are given. In the former, a shallow classical minimum of depth 0.1MKKNc/λ\sim 0.1M_{KK}{N_c/\lambda} forms at around rMKK5.5rM_{KK}\simeq 5.5.

Keywords

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

R2 v1 2026-06-21T12:14:45.721Z