论文标题
扩展的dicke模型中的量子相变和浆果相
Quantum Phase Transition and Berry Phase in an Extended Dicke Model
论文作者
论文摘要
我们研究了嵌入非线性光学培养基中的非相互作用的两级原子集合的基态的量子相变,量子临界点和浆果相,并耦合到单模量化的电磁场。光学介质通过经典的电场在外部泵送,因此存在退化的参数放大效果,该效果强烈修改了场动力学而不会影响原子扇形。通过半经典描述,描述了该扩展的Dicke模型的不同阶段。量子相变的特征是系统的某些可观察到的预期值以及浆果相及其第一个衍生物,其中这种数量用作顺序参数。值得注意的是,该模型可以通过适当选择非线性光学介质的参数来控制量子临界点,这可能使使用低强度激光器在实验上使用低强度激光器来访问级别区域。
We investigate quantum phase transitions, quantum criticality, and Berry phase for the ground state of an ensemble of non-interacting two-level atoms embedded in a non-linear optical medium, coupled to a single-mode quantized electromagnetic field. The optical medium is pumped externally through a classical electric field, so that there is a degenerate parametric amplification effect, which strongly modifies the field dynamics without affecting the atomic sector. Through a semiclassical description the different phases of this extended Dicke model are described. The quantum phase transition is characterized with the expectation values of some observables of the system as well as the Berry phase and its first derivative, where such quantities serve as order parameters. It is remarkable that the model allows the control of the quantum criticality through a suitable choice of the parameters of the non-linear optical medium, which could make possible the use of a low intensity laser to access the superradiant region experimentally.