论文标题
实现拓扑频率转换的动力脱钩
Dynamical decoupling for realization of topological frequency conversion
论文作者
论文摘要
拓扑物理的特征可以以不同的方式在各种物理系统中表现出来。定期驱动的系统具有高灵活性和可控性的优势,提供了一个多功能平台,以模拟许多拓扑现象,并可能导致新现象,而在没有驾驶的情况下无法观察到。在这里,我们研究了现实的实验噪声对在两频驱动器下实现两级系统的影响,该驱动器在二维浮标空间中诱导拓扑上的非平凡带结构。我们提出了一个动力学去耦方案,该方案维持拓扑相过渡,以克服脱去的影响。因此,该提案将有助于观察固态自旋系统中的拓扑频率转换,例如钻石的NV中心。
The features of topological physics can manifest in a variety of physical systems in distinct ways. Periodically driven systems, with the advantage of high flexibility and controllability, provide a versatile platform to simulate many topological phenomena and may lead to novel phenomena that can not be observed in the absence of driving. Here we investigate the influence of realistic experimental noise on the realization of a two-level system under a two-frequency drive that induces topologically nontrivial band structure in the two-dimensional Floquet space. We propose a dynamical decoupling scheme that sustains the topological phase transition overcoming the influence of dephasing. Therefore, the proposal would facilitate the observation of topological frequency conversion in the solid state spin system, e.g. NV center in diamond.