Recently, remarkable advances have been made in coupling a number of high-Q modes of nano-mechanical systems to high-finesse optical cavities, with the goal of reaching regimes in which quantum behavior can be observed and leveraged toward new applications. To reach this regime, the coupling between these systems and their thermal environments must be minimized. Here we propose a novel approach to this problem, in which optically levitating a nano-mechanical system can greatly reduce its thermal contact, while simultaneously eliminating dissipation arising from clamping. Through the long coherence times allowed, this approach potentially opens the door to ground-state cooling and coherent manipulation of a single mesoscopic mechanical syste...
In recent years the zoology of tamed quantum systems has witnessed the arrival of a new member. In t...
In recent years the zoology of tamed quantum systems has witnessed the arrival of a new member. In t...
Experiments in the field of cavity optomechanics have recently demonstrated the cooling of macroscopi...
We report on cooling the center-of-mass motion of a nanoparticle due to a purely quadratic coupling ...
.The ability to engineer and control the macroscopic motion of mechanical oscillators has become an ...
The coupling of a levitated submicron particle and an optical cavity field promises access to a uni...
The coupling of a levitated submicron particle and an optical cavity field promises access to a uni...
Optomechanical systems explore and exploit the coupling between light and the mechanical motion of m...
We experimentally squeeze the thermal motional state of an optically levitated nanosphere by fast sw...
The use of levitated nanospheres represents a new paradigm for the optomechanical cooling of a small...
We experimentally squeeze the thermal motional state of an optically levitated nanosphere by fast sw...
We experimentally squeeze the thermal motional state of an optically levitated nanosphere by fast sw...
We experimentally squeeze the thermal motional state of an optically levitated nanosphere by fast sw...
We experimentally squeeze the thermal motional state of an optically levitated nanosphere by fast sw...
Optomechanical cooling of levitated dielectric particles represents a promising new approach in the ...
In recent years the zoology of tamed quantum systems has witnessed the arrival of a new member. In t...
In recent years the zoology of tamed quantum systems has witnessed the arrival of a new member. In t...
Experiments in the field of cavity optomechanics have recently demonstrated the cooling of macroscopi...
We report on cooling the center-of-mass motion of a nanoparticle due to a purely quadratic coupling ...
.The ability to engineer and control the macroscopic motion of mechanical oscillators has become an ...
The coupling of a levitated submicron particle and an optical cavity field promises access to a uni...
The coupling of a levitated submicron particle and an optical cavity field promises access to a uni...
Optomechanical systems explore and exploit the coupling between light and the mechanical motion of m...
We experimentally squeeze the thermal motional state of an optically levitated nanosphere by fast sw...
The use of levitated nanospheres represents a new paradigm for the optomechanical cooling of a small...
We experimentally squeeze the thermal motional state of an optically levitated nanosphere by fast sw...
We experimentally squeeze the thermal motional state of an optically levitated nanosphere by fast sw...
We experimentally squeeze the thermal motional state of an optically levitated nanosphere by fast sw...
We experimentally squeeze the thermal motional state of an optically levitated nanosphere by fast sw...
Optomechanical cooling of levitated dielectric particles represents a promising new approach in the ...
In recent years the zoology of tamed quantum systems has witnessed the arrival of a new member. In t...
In recent years the zoology of tamed quantum systems has witnessed the arrival of a new member. In t...
Experiments in the field of cavity optomechanics have recently demonstrated the cooling of macroscopi...