We investigate a setup where a cloud of atoms is trapped in an optical lattice potential of a standing-wave laser field which is created by retroreflection on a micromembrane. The membrane vibrations itself realize a quantum mechanical degree of freedom. We show that the center-of-mass mode of atoms can be coupled to the vibrational mode of the membrane in free space. Via laser cooling of atoms a significant sympathetic cooling effect on the membrane vibrations can be achieved. Switching off laser cooling brings the system close to a regime of strong coherent coupling. This setup provides a controllable segregation between the cooling and coherent dynamics regimes, and allows one to keep the membrane in a cryogenic environment and atoms at ...
We observe effects of collective atomic motion in a one-dimensional optical lattice coupled to an op...
We investigate a hybrid optomechanical system composed of a micromechanical oscillator as a movable ...
We investigate a hybrid optomechanical system composed of a micromechanical oscillator as a movable ...
We investigate a setup where a cloud of atoms is trapped in an optical lattice potential of a standi...
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 discuss a hybrid quantum system where a dielectric membrane situated inside an optical cavity is ...
We discuss a hybrid quantum system where a dielectric membrane situated inside an optical cavity is ...
We present a hybrid optomechanical system in which a membrane oscillator is coupled to ultracold ato...
Optical lattices are periodic arrangements of laser cooled atoms trapped in potentials created by th...
Optical lattices are periodic arrangements of laser cooled atoms trapped in potentials created by th...
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 investigate a hybrid optomechanical system composed of a micromechanical oscillator as a movable ...
We investigate a hybrid optomechanical system composed of a micromechanical oscillator as a movable ...
We investigate a setup where a cloud of atoms is trapped in an optical lattice potential of a standi...
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 discuss a hybrid quantum system where a dielectric membrane situated inside an optical cavity is ...
We discuss a hybrid quantum system where a dielectric membrane situated inside an optical cavity is ...
We present a hybrid optomechanical system in which a membrane oscillator is coupled to ultracold ato...
Optical lattices are periodic arrangements of laser cooled atoms trapped in potentials created by th...
Optical lattices are periodic arrangements of laser cooled atoms trapped in potentials created by th...
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 investigate a hybrid optomechanical system composed of a micromechanical oscillator as a movable ...
We investigate a hybrid optomechanical system composed of a micromechanical oscillator as a movable ...