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首页> 外文期刊>Physical review, E >From thermal to excited-state quantum phase transition: The Dicke model
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From thermal to excited-state quantum phase transition: The Dicke model

机译:从热到兴奋状态量子相变:Dicke模型

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We study the thermodynamics of the full version of the Dicke model, including all the possible values of the total angular momentum j ,with bothmicrocanonical and canonical ensembles.We focus on both the excited-state quantum phase transition, appearing in the microcanonical description of the maximum angular momentum sector, j = N/2, and the thermal phase transition, which occurs when all the sectors are taken into account.We show that two different features characterize the full version of the Dicke model. If the system is in contact with a thermal bath and is described by means of the canonical ensemble, the parity symmetry becomes spontaneously broken at the critical temperature. In the microcanonical ensemble, and despite that all the logarithmic singularities which characterize the excited-state quantum phase transition are ruled out when all the j sectors are considered, there still exists a critical energy (or temperature) dividing the spectrum into two regions: one in which the parity symmetry can be broken, and another in which this symmetry is always well defined.
机译:我们研究了Dicke模型的完整版本的热力学,包括总角动量J的所有可能值J,均具有兼顾典型的典型组合。我们专注于兴奋状态量子转换,出现在微常描述中当考虑所有扇区时,最大角动量扇区j = n / 2和热相转换,这会出现所有扇区.WE表明两个不同的功能表征了Dicke模型的完整版本。如果系统与热浴接触并通过规范合奏描述,则奇偶校正对称在临界温度下变得自发地破裂。在微谐波集合中,尽管在考虑所有J个扇区时,尽管考虑了励磁状态阶段转换的所有对数奇异性,但是当考虑所有J个扇区时,仍然存在将频谱划分为两个区域的临界能量(或温度):一个其中奇偶校验对称可以被打破,并且另一个对称性始终定义该对称性。

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