Department of Physics and Astronomy, Stony Brook University, Stony Brook, New York 11794-3800, USA.
Phys Rev Lett. 2010 Jul 23;105(4):045303. doi: 10.1103/PhysRevLett.105.045303.
We report the observation of many-body interaction effects for a homonuclear bosonic mixture in a three-dimensional optical lattice with variable state dependence along one axis. Near the superfluid-to-Mott insulator transition for one component, we find that the presence of a second component can reduce the apparent superfluid coherence, most significantly when the second component either experiences a strongly localizing lattice potential or none at all. We examine this effect by varying the relative populations and lattice depths, and discuss the observed behavior in view of recent proposals for atomic-disorder and polaron-induced localization.
我们报告了在沿一个轴具有可变态依赖性的三维光学晶格中同核玻色混合物的多体相互作用效应的观察结果。在一个组件的超流到莫特绝缘体转变附近,我们发现第二组件的存在可以降低明显的超流相干性,当第二组件经历强局域晶格势或根本没有晶格势时,这种影响最为显著。我们通过改变相对种群和晶格深度来研究这种效应,并根据最近关于原子无序和极化子诱导局域化的提议来讨论观察到的行为。