This work was supported by the UK Engineering and Physical Sciences Research Council (EPSRC grant numbers: EP/J01771X/1 and EP/G061688/1)Quantum state preparation of mesoscopic objects is a powerful playground for the elucidation of many physical principles. The field of cavity optomechanics aims to create these states through laser cooling and by minimizing state decoherence. Here we demonstrate simultaneous optical trapping and rotation of a birefringent microparticle in vacuum using a circularly polarized trapping laser beam—a microgyroscope. We show stable rotation rates up to 5 MHz. Coupling between the rotational and translational degrees of freedom of the trapped microgyroscope leads to the observation of positional stabilization in ...
We demonstrate all-optical sympathetic cooling of a laser-trapped microsphere to sub-Kelvin temperat...
Light-induced rotation of absorbing microscopic particles by transfer of angular momentum from light...
Optomechanics is concerned with the use of light to control mechanical objects. As a field, it has b...
Quantum state preparation of mesoscopic objects is a powerful playground for the elucidation of many...
Funding: Engineering and Physical Sciences Research Council (EPSRC) (EP/J01771X/1).We demonstrate tr...
We demonstrate optical trapping of a microgyroscope rotating at MHz rates in vacuum. The particle is...
Funding: UK Engineering and Physical Sciences Research Council (EP/P030017/1).We demonstrate all-opt...
Birefringent microspheres, trapped in vacuum and set into rotation by circularly polarised light, de...
We describe recent experiments that have demonstrated cavity optomechanical cooling of the center-of...
Funding: UK EPSRC under the Programme Grant EP/P030017/1.The fastest-spinning man-made object is a t...
Experiments in the field of cavity optomechanics have recently demonstrated the cooling of macroscopi...
We trap a single silica microparticle in a complex three dimensional optical potential with orbital ...
Precise optical control of microscopic particles has been mastered over the past three decades, with...
The coupling of a levitated submicron particle and an optical cavity field promises access to a uni...
Optomechanical systems have been attracting intensive attention in various physical experiments. Wit...
We demonstrate all-optical sympathetic cooling of a laser-trapped microsphere to sub-Kelvin temperat...
Light-induced rotation of absorbing microscopic particles by transfer of angular momentum from light...
Optomechanics is concerned with the use of light to control mechanical objects. As a field, it has b...
Quantum state preparation of mesoscopic objects is a powerful playground for the elucidation of many...
Funding: Engineering and Physical Sciences Research Council (EPSRC) (EP/J01771X/1).We demonstrate tr...
We demonstrate optical trapping of a microgyroscope rotating at MHz rates in vacuum. The particle is...
Funding: UK Engineering and Physical Sciences Research Council (EP/P030017/1).We demonstrate all-opt...
Birefringent microspheres, trapped in vacuum and set into rotation by circularly polarised light, de...
We describe recent experiments that have demonstrated cavity optomechanical cooling of the center-of...
Funding: UK EPSRC under the Programme Grant EP/P030017/1.The fastest-spinning man-made object is a t...
Experiments in the field of cavity optomechanics have recently demonstrated the cooling of macroscopi...
We trap a single silica microparticle in a complex three dimensional optical potential with orbital ...
Precise optical control of microscopic particles has been mastered over the past three decades, with...
The coupling of a levitated submicron particle and an optical cavity field promises access to a uni...
Optomechanical systems have been attracting intensive attention in various physical experiments. Wit...
We demonstrate all-optical sympathetic cooling of a laser-trapped microsphere to sub-Kelvin temperat...
Light-induced rotation of absorbing microscopic particles by transfer of angular momentum from light...
Optomechanics is concerned with the use of light to control mechanical objects. As a field, it has b...