The physics of nonlinear dynamics has been studied in detail in macroscopic mechanical systems like the driven classical pendulum. By now, it is possible to build mechanical devices on the nanometer scale with eigenfrequencies on the order of several 100 MHz. In this work, we want to present how to machine such nanomechanical resonators out of silicon-on-insulator wafers and how to operate them in the nonlinear regime in order to investigate higher-order mechanical mixing at radio frequencies. The nonlinear response then is compared in detail to nth-order perturbation theory and nonperturbative numerical calculations
We have realized a nano-electromechanical hybrid system consisting of a silicon nitride beam dielect...
International audienceNanoelectromechanical systems (NEMS) have been the focus of recent applied and...
Highly nonlinear behaviour observed in nano-electromechanical systems (NEMS) has been attracting muc...
The physics of nonlinear dynamics has been studied in detail in macroscopic mechanical systems like...
This paper reports a novel method to build a model for nonlinear resonance behaviour of very-high-fr...
This paper reports a novel attempt to build a model of nonlinear resonance behavior of very-high-fre...
During the last decade, we have witnessed that micro/nanomechanical resonators have revolutionized f...
In the last decade we have witnessed exciting technological advances in the fabri-cation and control...
International audienceIn order to compensate for the loss of performance when scaling resonant senso...
Frequency conversion is one of the main applications of nonlinear optical processes in which a signa...
This review provides a summary of the work completed to date on the nonlinear dynamics of resonant m...
Nanomechanics features three-dimensional nanostructuring, which allows full exploitation of the mech...
We explore an electrostatic mechanism for tuning the nonlinearity of nanomechanical resonators and i...
Micro/nanomechanical resonators have been actively studied in the last decade in designs of highly s...
We study locking phenomena of two strongly coupled, high quality factor nanomechanical resonator mod...
We have realized a nano-electromechanical hybrid system consisting of a silicon nitride beam dielect...
International audienceNanoelectromechanical systems (NEMS) have been the focus of recent applied and...
Highly nonlinear behaviour observed in nano-electromechanical systems (NEMS) has been attracting muc...
The physics of nonlinear dynamics has been studied in detail in macroscopic mechanical systems like...
This paper reports a novel method to build a model for nonlinear resonance behaviour of very-high-fr...
This paper reports a novel attempt to build a model of nonlinear resonance behavior of very-high-fre...
During the last decade, we have witnessed that micro/nanomechanical resonators have revolutionized f...
In the last decade we have witnessed exciting technological advances in the fabri-cation and control...
International audienceIn order to compensate for the loss of performance when scaling resonant senso...
Frequency conversion is one of the main applications of nonlinear optical processes in which a signa...
This review provides a summary of the work completed to date on the nonlinear dynamics of resonant m...
Nanomechanics features three-dimensional nanostructuring, which allows full exploitation of the mech...
We explore an electrostatic mechanism for tuning the nonlinearity of nanomechanical resonators and i...
Micro/nanomechanical resonators have been actively studied in the last decade in designs of highly s...
We study locking phenomena of two strongly coupled, high quality factor nanomechanical resonator mod...
We have realized a nano-electromechanical hybrid system consisting of a silicon nitride beam dielect...
International audienceNanoelectromechanical systems (NEMS) have been the focus of recent applied and...
Highly nonlinear behaviour observed in nano-electromechanical systems (NEMS) has been attracting muc...