Synchronization in oscillatory systems is a frequent natural phenomenon and is becoming an important concept in modern physics. Nanomechanical resonators are ideal systems for studying synchronization due to their controllable oscillation properties and engineerable nonlinearities. Here we demonstrate synchronization of two nanomechanical oscillators via a photonic resonator, enabling optomechanical synchronization between mechanically isolated nanomechanical resonators. Optical backaction gives rise to both reactive and dissipative coupling of the mechanical resonators, leading to coherent oscillation and mutual locking of resonators with dynamics beyond the widely accepted phase oscillator (Kuramoto) model. In addition to the phase differ...
Synchronization of oscillators based on anharmonic nanoelectromechanical resonators. Experimental im...
Nanomechanical oscillators are at the heart of a variety of precision measurements. This article rep...
In the 70s, the interplay between microscale electronics and mechanics gave birth to micro- and nano...
Synchronization in oscillatory systems is a frequent natural phenomenon and is becoming an important...
We demonstrate experimentally the synchronization of two micromechanical oscillators actuated by the...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
The synchronization of coupled oscillators is a phenomenon found throughout nature. Mechanical oscil...
International audienceWe investigate self-organized synchronization in a blue-detuned optomechanical...
Collective phenomena emerging from nonlinear interactions between multiple oscillators, such as sync...
International audienceWe investigate self-organized synchronization in a blue-detuned optomechanical...
We investigate self-organized synchronization in a blue-detuned optomechanical cavity that is mechan...
Using amplitude equations, we show that groups of identical nanomechanical resonators, interacting w...
We demonstrate an optomechanical microresonator in which optical and mechanical degrees of freedom e...
We proposed a new optomechanical system (OMS) based on parallel suspended one-dimensional optomechan...
Optomechanical systems couple light stored inside an optical cavity to the motion of a mechanical mo...
Synchronization of oscillators based on anharmonic nanoelectromechanical resonators. Experimental im...
Nanomechanical oscillators are at the heart of a variety of precision measurements. This article rep...
In the 70s, the interplay between microscale electronics and mechanics gave birth to micro- and nano...
Synchronization in oscillatory systems is a frequent natural phenomenon and is becoming an important...
We demonstrate experimentally the synchronization of two micromechanical oscillators actuated by the...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
The synchronization of coupled oscillators is a phenomenon found throughout nature. Mechanical oscil...
International audienceWe investigate self-organized synchronization in a blue-detuned optomechanical...
Collective phenomena emerging from nonlinear interactions between multiple oscillators, such as sync...
International audienceWe investigate self-organized synchronization in a blue-detuned optomechanical...
We investigate self-organized synchronization in a blue-detuned optomechanical cavity that is mechan...
Using amplitude equations, we show that groups of identical nanomechanical resonators, interacting w...
We demonstrate an optomechanical microresonator in which optical and mechanical degrees of freedom e...
We proposed a new optomechanical system (OMS) based on parallel suspended one-dimensional optomechan...
Optomechanical systems couple light stored inside an optical cavity to the motion of a mechanical mo...
Synchronization of oscillators based on anharmonic nanoelectromechanical resonators. Experimental im...
Nanomechanical oscillators are at the heart of a variety of precision measurements. This article rep...
In the 70s, the interplay between microscale electronics and mechanics gave birth to micro- and nano...