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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Photon-blockade-induced Mott transitions and XY spin models in coupled cavity arrays
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Photon-blockade-induced Mott transitions and XY spin models in coupled cavity arrays

机译:耦合腔阵列中的光子阻挡诱导的Mott跃迁和XY自旋模型

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We propose a physical system where photons could exhibit strongly correlated effects. We demonstrate how a Mott-insulator phase of atom-photon excitations (polaritons) can arise in an array of individually addressable coupled electromagnetic cavities when each of these cavities is coupled resonantly to a single two-level system (atom, quantum dot, or Cooper pair). This Mott phase is characterized by the same integral number of net polaritonic excitations with photon blockade providing the required repulsion between the excitations in each site. Detuning the atomic and photonic frequencies suppresses this effect and induces a transition to a photonic superfluid. Finally, on resonance the system can straightforwardly simulate the dynamics of many-body spin systems.
机译:我们提出了一个物理系统,其中光子可以表现出强相关的效应。我们演示了当每个腔体共振耦合到单个两能级系统(原子,量子点或库珀)时,原子光子激发(极化子)的莫特-绝缘子相如何在一系列可单独寻址的耦合电磁腔中出现对)。此莫特相的特征在于,净极化子激发的整数倍具有光子阻隔,从而在每个位点的激发之间提供了所需的排斥力。使原子频率和光子频率失谐会抑制此效应,并导致过渡到光子超流体。最后,在共振时,系统可以直接模拟多体自旋系统的动力学。

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