期刊
JOURNAL OF HIGH ENERGY PHYSICS
卷 -, 期 6, 页码 -出版社
SPRINGER
DOI: 10.1007/JHEP06(2018)094
关键词
1/N Expansion; Black Holes in String Theory; Gauge-gravity correspondence
资金
- UGC/ISF Indo Israel grant
- Infosys Endowment for Research into the Quantum Structure of Spacetime
It has recently been demonstrated that the large N limit of a model of fermions charged under the global/gauge symmetry group O(N)(q-1) agrees with the large N limit of the SYK model. In these notes we investigate aspects of the dynamics of the O(N)(q-1) theories that differ from their SYK counterparts. We argue that the spectrum of fluctuations about the finite temperature saddle point in these theories has (q -1)N-2/N new light modes in addition to the light Schwarzian mode that exists even in the SYK model, suggesting that the bulk dual description of theories differ significantly if they both exist. We also study the thermal partition function of a mass deformed version of the SYK model. At large mass we show that the effective entropy of this theory grows with energy like E ln E (i.e. faster than Hagedorn) up to energies of order N-2. The canonical partition function of the model displays a deconfinement or Hawking Page type phase transition at temperatures of order 1/ln N. We derive these results in the large mass limit but argue that they are qualitatively robust to small corrections in J/m.
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