We investigate experimentally the dynamics of a non-spherical levitated nanoparticle in vacuum. In addition to translation and rotation motion, we observe the light torque-induced precession and nutation of the trapped particle. We provide a theoretical model, which we numerically simulate and from which we derive approximate expressions for the motional frequencies. Both, the simulation and approximate expressions, we find in good agreement with experiments. We measure a torque of 1.9±0.5×10−23 Nm at 1×10−1 mbar, with an estimated torque sensitivity of 3.6±1.1×10−31 Nm/√Hz at 1×10−7 mbar
Levitated optomechanics is showing potential for precise force measurements. Here, we report a case ...
We demonstrate the transfer of orbital angular momentum to optically levitated microparticles in vac...
Levitated optomechanics is an emerging area of study enabled by optically trapped mesoscopic particl...
We investigate experimentally the dynamics of a nonspherical levitated nanoparticle in a vacuum. In ...
We investigate experimentally the dynamics of a nonspherical levitated nanoparticle in a vacuum. In...
Thesis (Ph. D.)--University of Rochester. The Institute of Optics, 2019.Optomechanical systems are c...
Optomechanics is concerned with the use of light to control mechanical objects. As a field, it has b...
With the unique advantage of great isolation from the thermal environment, levitated optomechanics h...
Thesis (Ph. D.)--University of Rochester. Department of Physics and Astronomy, 2015.Free-space optic...
Interferometric position detection of levitated particles is crucial for the centre-of-mass (CM) mot...
Optically levitated nano-objects in vacuum are among the highest quality mechanical oscillators, and...
The hyper-fast rotation frequency realised in an optical levitation system provides an essential pla...
Premi extraordinari doctorat 2013-2014Nanotechnology was named one of the key enabling technologies ...
We trap a single silica microparticle in a complex three dimensional optical potential with orbital ...
We report on the two-dimensional (2D) dynamics of a levitated nanoparticle in an optical cavity. The...
Levitated optomechanics is showing potential for precise force measurements. Here, we report a case ...
We demonstrate the transfer of orbital angular momentum to optically levitated microparticles in vac...
Levitated optomechanics is an emerging area of study enabled by optically trapped mesoscopic particl...
We investigate experimentally the dynamics of a nonspherical levitated nanoparticle in a vacuum. In ...
We investigate experimentally the dynamics of a nonspherical levitated nanoparticle in a vacuum. In...
Thesis (Ph. D.)--University of Rochester. The Institute of Optics, 2019.Optomechanical systems are c...
Optomechanics is concerned with the use of light to control mechanical objects. As a field, it has b...
With the unique advantage of great isolation from the thermal environment, levitated optomechanics h...
Thesis (Ph. D.)--University of Rochester. Department of Physics and Astronomy, 2015.Free-space optic...
Interferometric position detection of levitated particles is crucial for the centre-of-mass (CM) mot...
Optically levitated nano-objects in vacuum are among the highest quality mechanical oscillators, and...
The hyper-fast rotation frequency realised in an optical levitation system provides an essential pla...
Premi extraordinari doctorat 2013-2014Nanotechnology was named one of the key enabling technologies ...
We trap a single silica microparticle in a complex three dimensional optical potential with orbital ...
We report on the two-dimensional (2D) dynamics of a levitated nanoparticle in an optical cavity. The...
Levitated optomechanics is showing potential for precise force measurements. Here, we report a case ...
We demonstrate the transfer of orbital angular momentum to optically levitated microparticles in vac...
Levitated optomechanics is an emerging area of study enabled by optically trapped mesoscopic particl...