International audienceDynamic stabilization by simultaneous primary and superharmonic resonances for high order nonlin-earity cancellation is demonstrated with an electrostatically-actuated, piezoresistively-transduced nanome-chanical resonator. We prove experimentally how the combination of both the third-order nonlinearity cancellation and simultaneous resonances can be used to linearly drive a nanocantilever up to very large amplitudes compared to fundamental limits like pull-in occurrence, opening the way towards resonators with high frequency stability for high-performance sensing or time reference
Nano-electro-mechanical systems (NEMS), used as sensors for small masses and forces, have traditiona...
International audienceAnalytical multi-physics models which include main sources of nonlinearities f...
Driven non-linear resonators can display sharp resonances or even multistable behaviours amenable to...
International audienceDynamic stabilization by simultaneous primary and superharmonic resonances for...
International audienceNanoelectromechanical systems (NEMS) have been the focus of recent applied and...
International audienceIn order to compensate for the loss of performance when scaling resonant senso...
International audienceFast effects of a slow excitation on the main resonance of a nonlinear microme...
International audienceThe nonlinear dynamics of in-plane nanoelectromechanical cantilevers based on ...
International audienceIn order to overcome the loss of performances issue when scaling resonant sens...
Advances in nanoscience and nanotechnology hold enormous promises to benefit humankind in basic rese...
We explore an electrostatic mechanism for tuning the nonlinearity of nanomechanical resonators and i...
This thesis describes new ways of operating high-frequency nanomechanical resonators and using them ...
Micro/nanomechanical resonators have been actively studied in the last decade in designs of highly s...
[[abstract]]Nanomechanical resonators can now be realized that achieve fundamental resonance frequen...
During the last decade, we have witnessed that micro/nanomechanical resonators have revolutionized f...
Nano-electro-mechanical systems (NEMS), used as sensors for small masses and forces, have traditiona...
International audienceAnalytical multi-physics models which include main sources of nonlinearities f...
Driven non-linear resonators can display sharp resonances or even multistable behaviours amenable to...
International audienceDynamic stabilization by simultaneous primary and superharmonic resonances for...
International audienceNanoelectromechanical systems (NEMS) have been the focus of recent applied and...
International audienceIn order to compensate for the loss of performance when scaling resonant senso...
International audienceFast effects of a slow excitation on the main resonance of a nonlinear microme...
International audienceThe nonlinear dynamics of in-plane nanoelectromechanical cantilevers based on ...
International audienceIn order to overcome the loss of performances issue when scaling resonant sens...
Advances in nanoscience and nanotechnology hold enormous promises to benefit humankind in basic rese...
We explore an electrostatic mechanism for tuning the nonlinearity of nanomechanical resonators and i...
This thesis describes new ways of operating high-frequency nanomechanical resonators and using them ...
Micro/nanomechanical resonators have been actively studied in the last decade in designs of highly s...
[[abstract]]Nanomechanical resonators can now be realized that achieve fundamental resonance frequen...
During the last decade, we have witnessed that micro/nanomechanical resonators have revolutionized f...
Nano-electro-mechanical systems (NEMS), used as sensors for small masses and forces, have traditiona...
International audienceAnalytical multi-physics models which include main sources of nonlinearities f...
Driven non-linear resonators can display sharp resonances or even multistable behaviours amenable to...