论文标题

拓扑燃烧玻璃效果

Topological Burning Glass Effect

论文作者

Körber, Simon, Privitera, Lorenzo, Budich, Jan Carl, Trauzettel, Björn

论文摘要

我们揭示了拓扑燃烧的玻璃效应,其中系统的局部响应表现出拓扑量化,由于其环境耦合,整数增强了拓扑量化。作为这一有趣现象的范式平台,我们研究了一个中心旋转,该中心旋转是由两个不稳定的频率驱动的,并在静态耦合到周围旋转周围的$ N-1 $。在强的耦合方案中,很容易理解总系统的绝热动态,可以在中央旋转$ n $ fold增强的拓扑频率转换中的烙印。我们认为,拓扑燃烧的玻璃效应是由中央自旋的非独立动力学引起的,该动力在局部涉及周围旋转的集体运动。我们的结果是在绝热扰动理论的框架中得出的,并通过精确的数值模拟完全证实。

We reveal a topological burning glass effect, where the local response of a system exhibits a topological quantization that is enhanced by an integer due to its environmental coupling. As a paradigmatic platform for this intriguing phenomenon, we study a central spin that is quasiperiodically driven by two incommensurate frequencies, and statically coupled to $N-1$ surrounding spins. In the strong coupling regime, the adiabatic dynamics of the total system is readily understood to imprint on the central spin an $N$-fold enhanced topological frequency conversion between the two driving frequencies. We argue that the topological burning glass effect is induced by the non-unitary dynamics of the central spin, which locally involves the collective motion of the surrounding spins. Our results are derived in the framework of adiabatic perturbation theory and fully corroborated by exact numerical simulations.

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