Mivehvar Farokh, Ritsch Helmut, Piazza Francesco
Institut für Theoretische Physik, Universität Innsbruck, A-6020 Innsbruck, Austria.
Phys Rev Lett. 2017 Feb 17;118(7):073602. doi: 10.1103/PhysRevLett.118.073602. Epub 2017 Feb 16.
We consider a spinless ultracold Fermi gas tightly trapped along the axis of an optical resonator and transversely illuminated by a laser closely tuned to a resonator mode. At a certain threshold pump intensity, the homogeneous gas density breaks a Z_{2} symmetry towards a spatially periodic order, which collectively scatters pump photons into the cavity. We show that this known self-ordering transition also occurs for low field seeking fermionic particles when the laser light is blue detuned to an atomic transition. The emergent superradiant optical lattice in this case is homopolar and possesses two distinct dimerizations. Depending on the spontaneously chosen dimerization, the resulting Bloch bands can have a nontrivial topological structure characterized by a nonvanishing Zak phase. In the case where the Fermi momentum is close to half of the cavity-mode wave number, a Peierls-like instability here creates a topological insulator with a gap at the Fermi surface, which hosts a pair of edge states. The topological features of the system can be nondestructively observed via the cavity output: the Zak phase of the bulk coincides with the relative phase between laser and cavity field, while the fingerprint of edge states can be observed as additional broadening in a well-defined frequency window of the cavity spectrum.
我们考虑一种无自旋的超冷费米气体,它沿光学谐振器的轴被紧密捕获,并由与谐振器模式紧密调谐的激光进行横向照射。在某个阈值泵浦强度下,均匀气体密度会朝着空间周期性有序打破(Z_{2})对称性,这种对称性会将泵浦光子集体散射到腔内。我们表明,当激光失谐到原子跃迁的蓝光波段时,对于低场寻找费米子粒子,这种已知的自排序转变也会发生。在这种情况下出现的超辐射光学晶格是同极的,并且具有两种不同的二聚化。根据自发选择的二聚化,得到的布洛赫能带可以具有由非零扎克相位表征的非平凡拓扑结构。在费米动量接近腔模波数的一半的情况下,这里类似皮尔斯的不稳定性会在费米面处产生一个有能隙的拓扑绝缘体,它包含一对边缘态。系统的拓扑特征可以通过腔输出进行无损观测:体的扎克相位与激光和腔场之间的相对相位一致,而边缘态的特征可以在腔谱的一个明确定义的频率窗口中作为额外的展宽被观测到。