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 number, small atom-light detuning and asymmetric pumping of the lattice, in agreement with previous theoretical work. The model connects the optomechanical instability to a phase delay in the g...
Optical lattices are periodic light shift potentials that are created by the interference of several...
Hybrid systems combining mechanical oscillators and ultracold atoms provide novel opportunities for...
We present a hybrid optomechanical system in which a membrane oscillator is coupled to ultracold ato...
We observe effects of collective atomic motion in a one-dimensional optical lattice coupled to an op...
We observe effects of collective atomic motion in a one-dimensional optical lattice coupled to an op...
We report on the realization of a hybrid optomechanical system in which ultracold atoms are coupled ...
We report on the realization of a hybrid optomechanical system in which ultracold atoms are coupled ...
We report on the realization of a hybrid optomechanical system in which ultracold atoms are coupled ...
Abstract. We report on the realization of a hybrid optomechanical system in which ultracold atoms ar...
Abstract. We report on the realization of a hybrid optomechanical system in which ultracold atoms ar...
We investigate a setup where a cloud of atoms is trapped in an optical lattice potential of a standi...
We investigate a setup where a cloud of atoms is trapped in an optical lattice potential of a standi...
Recent experimental developments have brought into focus optomechanical systems containing multiple ...
Recent experimental developments have brought into focus optomechanical systems containing multiple ...
Optical lattices are periodic light shift potentials that are created by the interference of several...
Optical lattices are periodic light shift potentials that are created by the interference of several...
Hybrid systems combining mechanical oscillators and ultracold atoms provide novel opportunities for...
We present a hybrid optomechanical system in which a membrane oscillator is coupled to ultracold ato...
We observe effects of collective atomic motion in a one-dimensional optical lattice coupled to an op...
We observe effects of collective atomic motion in a one-dimensional optical lattice coupled to an op...
We report on the realization of a hybrid optomechanical system in which ultracold atoms are coupled ...
We report on the realization of a hybrid optomechanical system in which ultracold atoms are coupled ...
We report on the realization of a hybrid optomechanical system in which ultracold atoms are coupled ...
Abstract. We report on the realization of a hybrid optomechanical system in which ultracold atoms ar...
Abstract. We report on the realization of a hybrid optomechanical system in which ultracold atoms ar...
We investigate a setup where a cloud of atoms is trapped in an optical lattice potential of a standi...
We investigate a setup where a cloud of atoms is trapped in an optical lattice potential of a standi...
Recent experimental developments have brought into focus optomechanical systems containing multiple ...
Recent experimental developments have brought into focus optomechanical systems containing multiple ...
Optical lattices are periodic light shift potentials that are created by the interference of several...
Optical lattices are periodic light shift potentials that are created by the interference of several...
Hybrid systems combining mechanical oscillators and ultracold atoms provide novel opportunities for...
We present a hybrid optomechanical system in which a membrane oscillator is coupled to ultracold ato...