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Observation of a Dissipation-Induced Classical to Quantum Transition

机译:耗散引起的经典到量子跃迁的观察

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Here, we report the experimental observation of a dynamical quantum phase transition in a strongly interacting open photonic system. The system studied, comprising a Jaynes-Cummings dimer realized on a superconducting circuit platform, exhibits a dissipation-driven localization transition. Signatures of the transition in the homodyne signal and photon number reveal this transition to be from a regime of classical oscillations into a macroscopically self-trapped state manifesting revivals, a fundamentally quantum phenomenon. This experiment also demonstrates a small-scale realization of a new class of quantum simulator, whose well-controlled coherent and dissipative dynamics is suited to the study of quantum many-body phenomena out of equilibrium.
机译:在这里,我们报告在强相互作用的开放光子系统中动态量子相变的实验观察。所研究的系统包括在超导电路平台上实现的Jaynes-Cummings二聚体,显示出耗散驱动的本地化过渡。零差信号和光子数跃迁的信号表明,这种跃迁是从经典的振动状态到宏观自陷状态的表现,这是一种从根本上说是量子现象的复兴。该实验还证明了新型量子模拟器的小规模实现,其良好控制的相干和耗散动力学适合于研究不平衡的量子多体现象。

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