Nie Wei, Peng Z H, Nori Franco, Liu Yu-Xi
Institute of Microelectronics, Tsinghua University, Beijing 100084, China.
Frontier Science Center for Quantum Information, Beijing, China.
Phys Rev Lett. 2020 Jan 17;124(2):023603. doi: 10.1103/PhysRevLett.124.023603.
Exploring the properties and applications of topological quantum states is essential to better understand topological matter. Here, we theoretically study a quasi-one-dimensional topological atom array. In the low-energy regime, the atom array is equivalent to a topological superatom. Driving the superatom in a cavity, we study the interaction between light and topological quantum states. We find that the edge states exhibit topology-protected quantum coherence, which can be characterized from the photon transmission. This quantum coherence helps us to find a superradiance-subradiance transition, and we also study its finite-size scaling behavior. The superradiance-subradiance transition also exists in symmetry-breaking systems. More importantly, it is shown that the quantum coherence of the subradiant edge state is robust to random noises, allowing the superatom to work as a topologically protected quantum memory. We suggest a relevant experiment with three-dimensional circuit QED. Our study may have applications in quantum computation and quantum optics based on topological edge states.
探索拓扑量子态的性质和应用对于更好地理解拓扑物质至关重要。在此,我们从理论上研究了一种准一维拓扑原子阵列。在低能区,该原子阵列等效于一个拓扑超原子。通过在腔中驱动超原子,我们研究了光与拓扑量子态之间的相互作用。我们发现边缘态表现出拓扑保护的量子相干性,这可以通过光子传输来表征。这种量子相干性有助于我们发现超辐射 - 亚辐射转变,并且我们还研究了其有限尺寸标度行为。超辐射 - 亚辐射转变在对称性破缺系统中也存在。更重要的是,结果表明亚辐射边缘态的量子相干性对随机噪声具有鲁棒性,这使得超原子能够作为一种拓扑保护的量子存储器工作。我们提出了一个基于三维电路量子电动力学的相关实验。我们的研究可能在基于拓扑边缘态的量子计算和量子光学中具有应用。