We propose a new matrix model describing multi-baryon systems. We derive the action from open string theory on the wrapped baryon vertex D-branes embedded in the D4-D8 model of large N-c holographic QCD. The positions of k baryons are unified into k x k matrices, with spin/isospin of the baryons encoded in a set of k-vectors. Holographic baryons are known to be very small in the large 't Hooft coupling limit, and our model offers a better systematic approach to dynamics of such baryons at short distances. We compute energetics and spectra (k = 1), and also short-distance nuclear force (k = 2). In particular, we obtain a new size of the holographic baryon and find a precise form of the repulsive core of nucleons. This matrix model complements the instanton soliton picture of holographic baryons, whose small size turned out to be well below the natural length scale of the approximation involved there. Our results show that, nevertheless, the basic properties of holographic baryons obtained there are robust under stringy corrections within a few percents.
A Matrix Model for Baryons and Nuclear Forces
JHEP, Vol.10(10), p.3
2010
: WOS:000284146800003
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- A Matrix Model for Baryons and Nuclear Forces
- Koji Hashimoto - RIKENNorihiro Iizuka - European Organization for Nuclear ResearchPiljin Yi - Korea Institute for Advanced Study
- SPRINGER; NEW YORK
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- Ministry of Education, Science and Technology via the Center for Quantum Spacetime: 2005-0049409 Basic Science Research Program: 2010-0013526 Basic Research Promotion Fund: KRF-2007-314-C00052 National Research Foundation of Korea: 2010-0008082
We would like to thank Yukawa Institute in Kyoto university and the organizers of the workshop on Branes, Strings and Black Holes, where this project started. K. H. is grateful to D. Tong for a discussion, and would like to thank DAMTP in university of Cambridge, National Taiwan Normal university, IPMU in university of Tokyo and CERN for hospitality. N.I. thanks RIKEN for hospitality. P.Y. was supported in part by the National Research Foundation of Korea (NRF) funded by the Ministry of Education, Science and Technology via the Center for Quantum Spacetime (grant number 2005-0049409), Basic Science Research Program (grant number 2010-0013526), and Basic Research Promotion Fund (grant number KRF-2007-314-C00052).
- Journal article
- 2010
- JHEP, Vol.10(10), p.3