Vochezer Aline, Kampschulte Tobias, Hammerer Klemens, Treutlein Philipp
Department of Physics, University of Basel, Klingelbergstrasse 82, 4056 Basel, Switzerland.
Institute for Theoretical Physics and Institute for Gravitational Physics (Albert Einstein Institute), Leibnitz University Hannover, Callinstrasse 38, 30167 Hannover, Germany.
Phys Rev Lett. 2018 Feb 16;120(7):073602. doi: 10.1103/PhysRevLett.120.073602.
We observe effects of collective atomic motion in a one-dimensional optical lattice coupled to an optomechanical system. In this hybrid atom-optomechanical system, the lattice light generates a coupling between the lattice atoms as well as between atoms and a micromechanical membrane oscillator. For large atom numbers we observe an instability in the coupled system, resulting in large-amplitude atom-membrane oscillations. We show that this behavior can be explained by light-mediated collective atomic motion in the lattice, which arises for large atom numbers, small atom-light detunings, and asymmetric pumping of the lattice, in agreement with previous theoretical work. The model connects the optomechanical instability to a phase delay in the global atomic backaction onto the lattice light, which we observe in a direct measurement.
我们观测了一维光学晶格中集体原子运动与光机械系统耦合时的效应。在这个混合原子 - 光机械系统中,晶格光在晶格原子之间以及原子与微机械膜振荡器之间产生耦合。对于大量原子,我们观测到耦合系统中的一种不稳定性,导致原子 - 膜的大幅振荡。我们表明,这种行为可以用光介导的晶格中集体原子运动来解释,这种运动在大量原子、小的原子 - 光失谐以及晶格的不对称泵浦情况下出现,这与之前的理论工作一致。该模型将光机械不稳定性与晶格光的全局原子反作用中的相位延迟联系起来,我们通过直接测量观测到了这种相位延迟。