论文标题
超导量子超材料中的拓扑光子对
Topological photon pairs in a superconducting quantum metamaterial
论文作者
论文摘要
拓扑物理学的最新发现对障碍量子系统和技术有希望。拓扑状态提供了此类系统的关键成分,具有增加对疾病和瑕疵的鲁棒性。在这里,我们使用一系列超导量子台来设计一维拓扑的非平凡量子超材料。通过对制成阵列进行微波光谱,我们可以实验观察基本激发的光谱。我们不仅发现单光子拓扑状态,而且还发现由于Qubits固有的非谐声而产生的外来绑定光子对带。此外,我们检测到两光子结合边缘状态的特征,该状态暗示了系统中相互作用引起的定位。我们的工作证明了拓扑模型的实验实现,并在量子超材料中具有有吸引力的光子光子相互作用。
Recent discoveries in topological physics hold a promise for disorder-robust quantum systems and technologies. Topological states provide the crucial ingredient of such systems featuring increased robustness to disorder and imperfections. Here, we use an array of superconducting qubits to engineer a one-dimensional topologically nontrivial quantum metamaterial. By performing microwave spectroscopy of the fabricated array, we experimentally observe the spectrum of elementary excitations. We find not only the single-photon topological states but also the bands of exotic bound photon pairs arising due to the inherent anharmonicity of qubits. Furthermore, we detect the signatures of the two-photon bound edge-localized state which hints towards interaction-induced localization in our system. Our work demonstrates an experimental implementation of the topological model with attractive photon-photon interaction in a quantum metamaterial.