Optically levitated rotors are prime candidates for torque sensors whose precision is limited by the fluctuations of the rotation frequency. In this work we investigate an optically levitated rotor at its fundamental thermal limit of frequency stability, where rotation-frequency fluctuations arise solely due to coupling to the thermal bath.ISSN:1094-1622ISSN:0556-2791ISSN:1050-294
We investigate experimentally the dynamics of a nonspherical levitated nanoparticle in a vacuum. In ...
International audienceThe correlation of phase fluctuations in any type of oscillator fundamentally ...
Levitated optomechanics has great potential in precision measurements, thermodynamics, macroscopic q...
Rotational optomechanics strives to gain quantum control over mechanical rotors by harnessing the in...
The non-conservative, azimuthal forces associated with inhomogeneous optical-spin angular momentum p...
: In this work, we study the light-induced changes of the rotational speed of a thin photomobile fil...
With the unique advantage of great isolation from the thermal environment, levitated optomechanics h...
Interferometric position detection of levitated particles is crucial for the centre-of-mass (CM) mot...
The field of levitodynamics has made substantial advancements in manipulating the translational and ...
A series of recent articles have presented results demonstrating optical cooling of macroscopic obje...
Nanomechanical devices have attracted the interest of a growing interdisciplinary research community...
Optically levitated nano-objects in vacuum are among the highest quality mechanical oscillators, and...
Funding: UK EPSRC under the Programme Grant EP/P030017/1.The fastest-spinning man-made object is a t...
By fixing of the outer tube of double-walled carbon nanotubes, a thermally driven rotary nanomotor c...
By fixing of the outer tube of double-walled carbon nanotubes, a thermally driven rotary nanomotor c...
We investigate experimentally the dynamics of a nonspherical levitated nanoparticle in a vacuum. In ...
International audienceThe correlation of phase fluctuations in any type of oscillator fundamentally ...
Levitated optomechanics has great potential in precision measurements, thermodynamics, macroscopic q...
Rotational optomechanics strives to gain quantum control over mechanical rotors by harnessing the in...
The non-conservative, azimuthal forces associated with inhomogeneous optical-spin angular momentum p...
: In this work, we study the light-induced changes of the rotational speed of a thin photomobile fil...
With the unique advantage of great isolation from the thermal environment, levitated optomechanics h...
Interferometric position detection of levitated particles is crucial for the centre-of-mass (CM) mot...
The field of levitodynamics has made substantial advancements in manipulating the translational and ...
A series of recent articles have presented results demonstrating optical cooling of macroscopic obje...
Nanomechanical devices have attracted the interest of a growing interdisciplinary research community...
Optically levitated nano-objects in vacuum are among the highest quality mechanical oscillators, and...
Funding: UK EPSRC under the Programme Grant EP/P030017/1.The fastest-spinning man-made object is a t...
By fixing of the outer tube of double-walled carbon nanotubes, a thermally driven rotary nanomotor c...
By fixing of the outer tube of double-walled carbon nanotubes, a thermally driven rotary nanomotor c...
We investigate experimentally the dynamics of a nonspherical levitated nanoparticle in a vacuum. In ...
International audienceThe correlation of phase fluctuations in any type of oscillator fundamentally ...
Levitated optomechanics has great potential in precision measurements, thermodynamics, macroscopic q...