We explore the collective non-Hermitian dynamics of a pair of non-conservatively coupled optomechanical oscillators. The oscillators consist of silica nanoparticles optically levitated in vacuum in two parallel pairs of interfering counter-propagating laser beams. By adjusting the relative phase, polarization, and separation of the trapping laser beams, we set the optical interaction between the particles to be purely non-reciprocal. Continuously varying the relative power of the trapping beams over a predefined range takes the system through a parity-time (PT) phase transition. Decreasing the dissipation rate within the non-equilibrium phase induces a Hopf bifurcation resulting in the formation of collective limit cycle oscillations simila...
We study optomechanical interactions in non-Hermitian photonic molecules that support two photonic s...
We demonstrate experimentally the synchronization of two micromechanical oscillators actuated by the...
We theoretically investigate PT symmetry, induced mechanical lasing, and force sensing in an optical...
We explore the collective non-Hermitian dynamics of a pair of non-conservatively coupled optomechani...
A pertinent question in cavity optomechanics is whether reaching the regime of large single-photon c...
Optomechanics is concerned with the use of light to control mechanical objects. As a field, it has b...
This dissertation aims to investigate systems in which several optical and mechanical degrees of fre...
The use of levitated nanospheres represents a new paradigm for the optomechanical cooling of a small...
The field of cavity optomechanics treats the interaction between light and nano- and micro-mechanica...
Two-photon coherent states are one of the main building pillars of non-linear and quantum optics. It...
Premi extraordinari doctorat 2013-2014Nanotechnology was named one of the key enabling technologies ...
Optomechanical systems explore and exploit the coupling between light and the mechanical motion of m...
We study the nonlinear driven dissipative quantum dynamics of an array of optomechanical systems. At...
Optomechanical systems couple light stored inside an optical cavity to the motion of a mechanical mo...
Optomechanical systems couple light to the motion of nanomechanical objects. Intriguing new effects ...
We study optomechanical interactions in non-Hermitian photonic molecules that support two photonic s...
We demonstrate experimentally the synchronization of two micromechanical oscillators actuated by the...
We theoretically investigate PT symmetry, induced mechanical lasing, and force sensing in an optical...
We explore the collective non-Hermitian dynamics of a pair of non-conservatively coupled optomechani...
A pertinent question in cavity optomechanics is whether reaching the regime of large single-photon c...
Optomechanics is concerned with the use of light to control mechanical objects. As a field, it has b...
This dissertation aims to investigate systems in which several optical and mechanical degrees of fre...
The use of levitated nanospheres represents a new paradigm for the optomechanical cooling of a small...
The field of cavity optomechanics treats the interaction between light and nano- and micro-mechanica...
Two-photon coherent states are one of the main building pillars of non-linear and quantum optics. It...
Premi extraordinari doctorat 2013-2014Nanotechnology was named one of the key enabling technologies ...
Optomechanical systems explore and exploit the coupling between light and the mechanical motion of m...
We study the nonlinear driven dissipative quantum dynamics of an array of optomechanical systems. At...
Optomechanical systems couple light stored inside an optical cavity to the motion of a mechanical mo...
Optomechanical systems couple light to the motion of nanomechanical objects. Intriguing new effects ...
We study optomechanical interactions in non-Hermitian photonic molecules that support two photonic s...
We demonstrate experimentally the synchronization of two micromechanical oscillators actuated by the...
We theoretically investigate PT symmetry, induced mechanical lasing, and force sensing in an optical...