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耦合摆阵列中的布洛赫振荡、朗道-齐纳跃迁和拓扑相演化

Bloch oscillations, Landau-Zener transition, and topological phase evolution in an array of coupled pendula.

作者信息

Neder Izhar, Sirote-Katz Chaviva, Geva Meital, Lahini Yoav, Ilan Roni, Shokef Yair

机构信息

Nuclear Physics and Engineering Department, Soreq Nuclear Research Center, Yavne 81800, Israel.

School of Physics and Astronomy, Tel Aviv University, Tel Aviv 69978, Israel.

出版信息

Proc Natl Acad Sci U S A. 2024 Feb 27;121(9):e2310715121. doi: 10.1073/pnas.2310715121. Epub 2024 Feb 23.

Abstract

We experimentally and theoretically study the dynamics of a one-dimensional array of pendula with a mild spatial gradient in their self-frequency and where neighboring pendula are connected with weak and alternating coupling. We map their dynamics to the topological Su-Schrieffer-Heeger model of charged quantum particles on a lattice with alternating hopping rates in an external electric field. By directly tracking the dynamics of a wave-packet in the bulk of the lattice, we observe Bloch oscillations, Landau-Zener transitions, and coupling between the isospin (i.e., the inner wave function distribution within the unit cell) and the spatial degrees of freedom (the distribution between unit cells). We then use Bloch oscillations in the bulk to directly measure the nontrivial global topological phase winding and local geometric phase of the band. We measure an overall evolution of 3.1 [Formula: see text] 0.2 radians for the geometrical phase during the Bloch period, consistent with the expected Zak phase of [Formula: see text]. Our results demonstrate the power of classical analogs of quantum models to directly observe the topological properties of the band structure and shed light on the similarities and the differences between quantum and classical topological effects.

摘要

我们通过实验和理论研究了一维摆锤阵列的动力学,这些摆锤的自振频率存在轻微的空间梯度,且相邻摆锤通过弱且交替的耦合相连。我们将它们的动力学映射到一个晶格上带电量子粒子的拓扑苏-施里弗-黑格模型,该模型在外部电场中具有交替的跳跃率。通过直接跟踪晶格主体中一个波包的动力学,我们观察到布洛赫振荡、朗道-齐纳跃迁以及同位旋(即晶胞内的内波函数分布)与空间自由度(晶胞间的分布)之间的耦合。然后,我们利用晶格主体中的布洛赫振荡直接测量能带的非平凡全局拓扑相位缠绕和局部几何相位。在布洛赫周期内,我们测量到几何相位的整体演化是3.1±0.2弧度,与预期的π/2的扎克相位一致。我们的结果证明了量子模型的经典类比在直接观测能带结构的拓扑性质方面的强大作用,并揭示了量子和经典拓扑效应之间的异同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65a6/10907251/1f4ae903d07d/pnas.2310715121fig02.jpg

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