Energy decay plays a central role in a wide range of phenomena1,2,3, such as optical emission, nuclear fission, and dissipation in quantum systems. Energy decay is usually described as a system leaking energy irreversibly into an environmental bath. Here, we report on energy decay measurements in nanomechanical systems based on multilayer graphene that cannot be explained by the paradigm of a system directly coupled to a bath. As the energy of a vibrational mode freely decays, the rate of energy decay changes abruptly to a lower value. This finding can be explained by a model where the measured mode hybridizes with other modes of the resonator at high energy. Below a threshold energy, modes are decoupled, resulting in comparatively low deca...
Graphene-based nanoelectromechanical systems (NEMS) have high future potential to realize sensitive ...
Nanoelectromechanical systems (NEMS) made from low-dimensional materials based on carbon, transition...
We utilize classical molecular dynamics to study the effects of intrinsic, interlayer friction betwe...
Energy decay plays a central role in a wide range of phenomena1,2,3, such as optical emission, nucle...
Energy decay plays a central role in a wide range of phenomena, such as optical emission, nuclear fi...
We measure the quality factor Q of electrically driven few-layer graphene drumhead resonators, provi...
We measure the quality factor <i>Q</i> of electrically driven few-layer graphene drumhead resonators...
A theoretical study of the quantum dynamics of a symmetric nanomechanical graphene resonator with de...
In recent years, mechanical resonators based on graphene have attracted considerable interest as na...
I summarize the results of my research in the subjects of nonlinear mechanics of grapheneresonators,...
In recent years, mechanical resonators based on graphene have attracted considerable interest as na...
When a contaminant diffuses on the surface of a nanomechanical resonator, the motions of the two bec...
Thermalization in nonlinear systems is a central concept in statistical mechanics and has been exten...
We study a system consisting of a particle adsorbed on a carbon nanotube resonator. The particle is ...
Graphene-based nanoelectromechanical systems (NEMS) have high future potential to realize sensitive ...
Graphene-based nanoelectromechanical systems (NEMS) have high future potential to realize sensitive ...
Nanoelectromechanical systems (NEMS) made from low-dimensional materials based on carbon, transition...
We utilize classical molecular dynamics to study the effects of intrinsic, interlayer friction betwe...
Energy decay plays a central role in a wide range of phenomena1,2,3, such as optical emission, nucle...
Energy decay plays a central role in a wide range of phenomena, such as optical emission, nuclear fi...
We measure the quality factor Q of electrically driven few-layer graphene drumhead resonators, provi...
We measure the quality factor <i>Q</i> of electrically driven few-layer graphene drumhead resonators...
A theoretical study of the quantum dynamics of a symmetric nanomechanical graphene resonator with de...
In recent years, mechanical resonators based on graphene have attracted considerable interest as na...
I summarize the results of my research in the subjects of nonlinear mechanics of grapheneresonators,...
In recent years, mechanical resonators based on graphene have attracted considerable interest as na...
When a contaminant diffuses on the surface of a nanomechanical resonator, the motions of the two bec...
Thermalization in nonlinear systems is a central concept in statistical mechanics and has been exten...
We study a system consisting of a particle adsorbed on a carbon nanotube resonator. The particle is ...
Graphene-based nanoelectromechanical systems (NEMS) have high future potential to realize sensitive ...
Graphene-based nanoelectromechanical systems (NEMS) have high future potential to realize sensitive ...
Nanoelectromechanical systems (NEMS) made from low-dimensional materials based on carbon, transition...
We utilize classical molecular dynamics to study the effects of intrinsic, interlayer friction betwe...