Dense holographic QCD in the Wigner-Seitz approximation

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초록

We investigate cold dense matter in the context of Sakai and Sugimoto's holographic model of QCD in the Wigner-Seitz approximation. In bulk, baryons are treated as instantons on S-3 x R-1 in each Wigner-Seitz cell. In holographic QCD, Skyrmions are instanton holonomies along the conformal direction. The high density phase is identified with a crystal of holographic Skyrmions with restored chiral symmetry at about 4M(KK)(3)/pi(5). As the average density goes up, it approaches to uniform distribution while the chiral condensate approaches to p-wave over a cell. The chiral symmetry is effectively restored in long wavelength limit since the chiral order parameter is averaged to be zero over a cell. The energy density in dense medium varies as n(B)(5/3), which is the expected power for non-relativistic fermion. This shows that the Pauli exclusion effect in boundary is encoded in the Coulomb repulsion in the bulk.

키워드

gauge-gravity correspondenceAdS-CFT correspondenceCHIRAL-SYMMETRY RESTORATIONSKYRME MODELFIELD-THEORIESMATTERNUCLEARGRAVITY
제목
Dense holographic QCD in the Wigner-Seitz approximation
저자
Kim, Keun-YoungSin, Sang-JinZahed, Ismail
DOI
10.1088/1126-6708/2008/09/001
발행일
2008-09
유형
Article
저널명
Journal of High Energy Physics
9
페이지
1 ~ 21

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