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The following article is Open access

Phase transitions and Heisenberg limited metrology in an Ising chain interacting with a single-mode cavity field

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Published 19 May 2011 Published under licence by IOP Publishing Ltd
, , Citation Søren Gammelmark and Klaus Mølmer 2011 New J. Phys. 13 053035 DOI 10.1088/1367-2630/13/5/053035

1367-2630/13/5/053035

Abstract

We investigate the thermodynamics of a combined Dicke and Ising model that exhibits a rich phenomenology arising from the second-order and quantum phase transitions from the respective models. The partition function is calculated using mean-field theory, and the free energy is analyzed in detail to determine the complete phase diagram of the system. The analysis reveals both first- and second-order Dicke phase transitions into a super-radiant state, and the cavity mean field in this regime acts as an effective magnetic field, which restricts the Ising chain dynamics to parameter ranges away from the Ising phase transition. Physical systems with first-order phase transitions are natural candidates for metrology and calibration purposes, and we apply filter theory to show that the sensitivity of the physical system to temperature and external fields reaches the 1/N Heisenberg limit.

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