A holographic model of quantum Hall transition

We consider a phenomenological holographic model, inspired by the D3/D7 system with a (2+1)-dimensional intersection, at finite chemical potential and magnetic field. At large 't Hooft coupling the system is unstable and needs regularization; the UV cutoff can be decoupled by considering a cert...

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Veröffentlicht in:Nuclear physics. B 2016-03, Vol.904 (C), p.448-469
Hauptverfasser: Mezzalira, Andrea, Parnachev, Andrei
Format: Artikel
Sprache:eng
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Zusammenfassung:We consider a phenomenological holographic model, inspired by the D3/D7 system with a (2+1)-dimensional intersection, at finite chemical potential and magnetic field. At large 't Hooft coupling the system is unstable and needs regularization; the UV cutoff can be decoupled by considering a certain double scaling limit. At finite chemical potential the model exhibits a phase transition between states with filling fractions plus and minus one-half as the magnetic field is varied. By varying the parameters of the model, this phase transition can be made to happen at arbitrary values of the magnetic field.
ISSN:0550-3213
1873-1562
DOI:10.1016/j.nuclphysb.2016.01.022