Optomechanical cavity cooling of levitated objects offers the possibility for laboratory investigation of the macroscopic quantum behavior of systems that are largely decoupled from their environment. However, experimental progress has been hindered by particle loss mechanisms, which have prevented levitation and cavity cooling in a vacuum. We overcome this problem with a new type of hybrid electro-optical trap formed from a Paul trap within a single-mode optical cavity. We demonstrate a factor of 100 cavity cooling of 400 nm diameter silica spheres trapped in vacuum. This paves the way for ground-state cooling in a smaller, higher finesse cavity, as we show that a novel feature of the hybrid trap is that the optomechanical cooling becomes ...
We demonstrate all-optical sympathetic cooling of a laser-trapped microsphere to sub-Kelvin temperat...
We demonstrate all-optical sympathetic cooling of a laser-trapped microsphere to sub-Kelvin temperat...
Levitated optomechanics, a new experimental physics platform, holds promise for fundamental science ...
.The ability to engineer and control the macroscopic motion of mechanical oscillators has become an ...
We describe recent experiments that have demonstrated cavity optomechanical cooling of the center-of...
The development of laser cooling coupled with the ability to trap atoms and ions in electromagnetic ...
Optomechanical systems explore and exploit the coupling between light and the mechanical motion of m...
There have been recent rapid developments in stable trapping of levitated nanoparticles in high vacu...
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...
Light can transfer momentum to a mechanical oscillator via the radiation pressure force. Conversely,...
In this work I report on a hybrid trap platform for sensitive optomechanics experiments with applica...
Accurate delivery of small targets in high vacuum is a pivotal task in many branches of science and ...
Accurate delivery of small targets in high vacuum is a pivotal task in many branches of science and ...
We experimentally realize cavity cooling of all three translational degrees of motion of a levitated...
We demonstrate all-optical sympathetic cooling of a laser-trapped microsphere to sub-Kelvin temperat...
We demonstrate all-optical sympathetic cooling of a laser-trapped microsphere to sub-Kelvin temperat...
Levitated optomechanics, a new experimental physics platform, holds promise for fundamental science ...
.The ability to engineer and control the macroscopic motion of mechanical oscillators has become an ...
We describe recent experiments that have demonstrated cavity optomechanical cooling of the center-of...
The development of laser cooling coupled with the ability to trap atoms and ions in electromagnetic ...
Optomechanical systems explore and exploit the coupling between light and the mechanical motion of m...
There have been recent rapid developments in stable trapping of levitated nanoparticles in high vacu...
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...
Light can transfer momentum to a mechanical oscillator via the radiation pressure force. Conversely,...
In this work I report on a hybrid trap platform for sensitive optomechanics experiments with applica...
Accurate delivery of small targets in high vacuum is a pivotal task in many branches of science and ...
Accurate delivery of small targets in high vacuum is a pivotal task in many branches of science and ...
We experimentally realize cavity cooling of all three translational degrees of motion of a levitated...
We demonstrate all-optical sympathetic cooling of a laser-trapped microsphere to sub-Kelvin temperat...
We demonstrate all-optical sympathetic cooling of a laser-trapped microsphere to sub-Kelvin temperat...
Levitated optomechanics, a new experimental physics platform, holds promise for fundamental science ...