Center for Nonlinear Phenomena and Complex Systems, Université Libre de Bruxelles, CP 231, Campus Plaine, B-1050 Brussels, Belgium.
Phys Rev Lett. 2018 Oct 26;121(17):170401. doi: 10.1103/PhysRevLett.121.170401.
Monopoles are intriguing topological objects, which play a central role in gauge theories and topological states of matter. While conventional monopoles are found in odd-dimensional flat spaces, such as the Dirac monopole in three dimensions and the non-Abelian Yang monopole in five dimensions, more exotic objects were predicted to exist in even dimensions. This is the case of "tensor monopoles," which are associated with tensor (Kalb-Ramond) gauge fields, and which can be defined in four-dimensional flat spaces. In this work, we investigate the possibility of creating and measuring such a tensor monopole in condensed-matter physics by introducing a realistic three-band model defined over a four-dimensional parameter space. Our probing method is based on the observation that the topological charge of this tensor monopole, which we relate to a generalized Berry curvature, can be directly extracted from the quantum metric. We propose a realistic three-level atomic system, where tensor monopoles could be generated and revealed through quantum-metric measurements.
磁单极子是有趣的拓扑物体,在规范理论和拓扑物质态中起着核心作用。虽然传统的磁单极子存在于奇数维度的平坦空间中,如三维的狄拉克磁单极子和五维的非阿贝尔杨磁单极子,但在偶数维度中也预测存在更奇异的物体。这就是“张量磁单极子”的情况,它与张量(卡尔布-拉姆登)规范场有关,可以在四维平坦空间中定义。在这项工作中,我们通过引入一个定义在四维参数空间上的现实三能带模型,研究了在凝聚态物理中创造和测量这种张量磁单极子的可能性。我们的探测方法基于这样的观察,即我们与广义贝里曲率相关联的这种张量磁单极子的拓扑电荷可以直接从量子度量中提取出来。我们提出了一个现实的三能级原子系统,其中可以通过量子度量测量来产生和揭示张量磁单极子。