论文标题

腔体系中的拓扑状态转移

Topological state transfers in cavity-magnon system

论文作者

Bao, Xi-Xi, Guo, Gang-Feng, Tan, Lei

论文摘要

我们提出了一个实验可行的方案,用于通过一维型腔量晶格中的拓扑边缘状态实现量子状态转移。我们发现,可以通过可调型腔磁通耦合分析地映射腔量系统。可以证明,边缘状态可以用作量子通道,通过调节空腔腔耦合强度来实现光子和宏伟状态转移。此外,我们的方案可以通过改变Intracell跳跃的幅度来实现光子状态和宏伟状态之间的量子状态转移。通过数值模拟,我们定量地表明,可以在空腔岩石晶格中高保真实现光子,镁和镁到光子状态转移。壮观地,甚至可以以可控的方式将三种不同类型的量子状态转移方案彼此转化。该系统提供了一种实现量子状态传输的新颖方法,并且可以在量子计算平台中实现。

We propose an experimentally feasible scheme for realizing quantum state transfer via the topological edge states in a one-dimensional cavity-magnon lattice. We find that the cavity-magnon system can be mapped analytically into the generalized Su-Schrieffer-Heeger model with tunable cavity-magnon coupling. It can be shown that the edge state can be served as a quantum channel to realize the photonic and magnonic state transfers by adjusting the cavity-cavity coupling strength. Further, our scheme can realize the quantum state transfer between photonic state and magnonic state by changing the amplitude of the intracell hopping. With a numerical simulation, we quantitatively show that the photonic, magnonic and magnon-to-photon state transfers can be achieved with high fidelity in the cavity-magnon lattice. Spectacularly, the three different types of quantum state transfer schemes can be even transformed to each other in a controllable fashion. This system provides a novel way of realizing quantum state transfer and can be implemented in quantum computing platforms.

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