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Polariton dynamics of a disordered three-cavity system of four-level atoms

机译:四级原子无序三腔系统的POLATITON动态

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The effect of disorder in the intensity of the driving laser on the dynamics of a disordered three-cavity system of four-level atoms is investigated. This system can be described by a Bose-Hubbard Hamiltonian for dark-state polaritons. We examine the evolution of the first- and second-order correlation functions, the photon and atomic excitation numbers and the basis state occupation probabilities. We use the full Hamiltonian and the approximate Bose-Hubbard Hamiltonian with uniform and speckle disorder, as well as with different dipole couplings. We find that the results for the two Hamiltonians are in good agreement. We also find that it is possible to obtain bunching and antibunching of the polaritons by varying the dipole couplings and that polaritons can be driven into a purely photonic state by varying the laser intensity.
机译:研究了驱动激光强度的无序对四能级原子无序三腔系统动力学的影响。这个系统可以用暗态极化子的玻色-哈伯德哈密顿量来描述。我们研究了一阶和二阶相关函数、光子和原子激发数以及基态占据概率的演化。我们使用全哈密顿量和近似玻色-哈伯德哈密顿量,包括均匀和散斑无序,以及不同的偶极耦合。我们发现这两个哈密顿量的结果是一致的。我们还发现,通过改变偶极子耦合可以获得极化子的聚束和反聚束,通过改变激光强度可以将极化子驱动到纯光子状态。

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