Fakultät für Physik, Ludwig-Maximilians-Universität, Schellingstraße 4, 80799 München, Germany.
Max-Planck-Institut für Quantenoptik, Hans-Kopfermann-Straße 1, 85748 Garching, Germany.
Nature. 2018 Jan 3;553(7686):55-58. doi: 10.1038/nature25000.
The discovery of topological states of matter has greatly improved our understanding of phase transitions in physical systems. Instead of being described by local order parameters, topological phases are described by global topological invariants and are therefore robust against perturbations. A prominent example is the two-dimensional (2D) integer quantum Hall effect: it is characterized by the first Chern number, which manifests in the quantized Hall response that is induced by an external electric field. Generalizing the quantum Hall effect to four-dimensional (4D) systems leads to the appearance of an additional quantized Hall response, but one that is nonlinear and described by a 4D topological invariant-the second Chern number. Here we report the observation of a bulk response with intrinsic 4D topology and demonstrate its quantization by measuring the associated second Chern number. By implementing a 2D topological charge pump using ultracold bosonic atoms in an angled optical superlattice, we realize a dynamical version of the 4D integer quantum Hall effect. Using a small cloud of atoms as a local probe, we fully characterize the nonlinear response of the system via in situ imaging and site-resolved band mapping. Our findings pave the way to experimentally probing higher-dimensional quantum Hall systems, in which additional strongly correlated topological phases, exotic collective excitations and boundary phenomena such as isolated Weyl fermions are predicted.
拓扑物质态的发现极大地提高了我们对物理系统相变的理解。拓扑相不是由局域序参量描述的,而是由全局拓扑不变量描述的,因此对微扰具有鲁棒性。二维(2D)整数量子霍尔效应就是一个突出的例子:它的特征是第一陈数,它表现为外电场诱导的量子霍尔响应。将量子霍尔效应推广到四维(4D)系统会导致出现额外的量子霍尔响应,但这种响应是非线性的,由 4D 拓扑不变量——第二陈数来描述。在这里,我们报告了具有内在 4D 拓扑的体响应的观测,并通过测量相关的第二陈数来证明其量子化。通过在倾斜的光学超晶格中使用超冷玻色原子来实现二维拓扑荷泵浦,我们实现了 4D 整数量子霍尔效应的动力学版本。通过使用一小团原子作为局部探针,我们通过原位成像和局域能带映射,充分表征了系统的非线性响应。我们的发现为实验探测更高维量子霍尔系统铺平了道路,在这些系统中,预测会出现额外的强关联拓扑相、奇异的集体激发以及边界现象,如孤立的外尔费米子。