Phases Of Melonic Quantum Mechanics
Résumé
We explore in detail properties of two melonic quantum mechanical theories which can be formulated either as fermionic matrix quantum mechanics in the new large D limit, or as disordered models. Both models have a mass parameter m and the transition from the perturbative large m region to the strongly coupled “black-hole” small m region is associated with several interesting phenomena. One model, with U(n)2 symmetry and equivalent to complex Sachdev-Ye-Kitaev, has a line of first-order phase transitions terminating, for a strictly positive temperature, at a critical point having nontrivial, nonmean-field critical exponents for standard thermodynamical quantities. Quasinormal frequencies, as well as Lyapunov exponents associated with out-of-time-ordered four-point functions, are also singular at the critical point, leading to interesting new critical exponents. The other model, with reduced U(n) symmetry, has a quantum critical point at strictly zero temperature and positive critical mass m*. For 0
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https://hal.science/hal-02080722
Soumis le : mercredi 27 mars 2019-04:37:03
Dernière modification le : mardi 20 août 2024-13:52:20
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Identifiants
- HAL Id : hal-02080722 , version 1
- ARXIV : 1903.06633
- DOI : 10.1103/PhysRevD.100.026007
- INSPIRE : 1725208
Citer
Frank Ferrari, Fidel I. Schaposnik Massolo. Phases Of Melonic Quantum Mechanics. Physical Review D, 2019, 100 (2), pp.026007. ⟨10.1103/PhysRevD.100.026007⟩. ⟨hal-02080722⟩
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