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First-Order Quantum Phase Transition for Dicke Model Induced by Atom-Atom Interaction 被引量:2
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作者 赵秀琴 刘妮 梁九卿 《Communications in Theoretical Physics》 SCIE CAS CSCD 2017年第5期511-519,共9页
In this article, we use the spin coherent state transformation and the ground state variational method to theoretically calculate the ground function. In order to consider the influence of the atom-atom interaction on... In this article, we use the spin coherent state transformation and the ground state variational method to theoretically calculate the ground function. In order to consider the influence of the atom-atom interaction on the extended Dicke model's ground state properties, the mean photon number, the scaled atomic population and the average ground energy are displayed. Using the self-consistent field theory to solve the atom-atom interaction, we discover the system undergoes a first-order quantum phase transition from the normal phase to the superradiant phase, but a famous Dicke-type second-order quantum phase transition without the atom-atom interaction. Meanwhile, the atom-atom interaction makes the phase transition point shift to the lower atom-photon collective coupling strength. 展开更多
关键词 first-order quantum phase transition atom-atom interaction spin-coherent-state variational method
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