Quality factor (Q) is an important property of micro- and nano-electromechanical (MEM/NEM) resonators that underlie timing references, frequency sources, atomic force microscopes, gyroscopes, and mass sensors. Various methods have been utilized to tune the effective quality factor of MEM/NEM resonators, including external proportional feedback control, optical pumping, mechanical pumping, thermal-piezoresistive pumping, and parametric pumping. This work reviews these mechanisms and compares the effective Q tuning using a position-proportional and a velocity-proportional force expression. We further clarify the relationship between the mechanical Q, the effective Q, and the thermomechanical noise of a resonator. We finally show that parametr...
We investigate the surface roughness influence on the gain from parametric amplification in nanoreso...
Achieving large signal-noise ratio using low levels of excitation signal is key requirement for prac...
International audienceWe report in this work on unprecedented levels of parametric amplification in ...
Resonant sensors based on micro- and nano-electro mechanical systems (M/NEMS) are ubiquitous in many...
AbstractThis report details electronic feedback techniques which allow precise control of the qualit...
In various applications, damping from the surrounding fluid severely degrades the performance of mic...
We present an integrated scheme for dielectric drive and read-out of high-Q nanomechanical resonator...
This authoritative book introduces and summarizes the latest models and skills required to design an...
Abstract — This paper presents a method of dynamically balancing tuning fork microresonators, enabli...
This paper presents a method of dynamically balancing tuning fork microresonators, enabling maximiza...
Noise measurements were performed to determine the quality factor ( Q) as a function of gas pressure...
AbstractThree measures of the dynamic response of micro-resonators are considered: gain, sharpness o...
Microelectromechanical Systems (MEMS) are well developed in various fields benefiting from the rapid...
Microelectromechanical systems (MEMS) resonators require fast, accurate, and cost-effective testing ...
We discuss the contribution of phonon interactions in determining the upper limit of f.Q product in ...
We investigate the surface roughness influence on the gain from parametric amplification in nanoreso...
Achieving large signal-noise ratio using low levels of excitation signal is key requirement for prac...
International audienceWe report in this work on unprecedented levels of parametric amplification in ...
Resonant sensors based on micro- and nano-electro mechanical systems (M/NEMS) are ubiquitous in many...
AbstractThis report details electronic feedback techniques which allow precise control of the qualit...
In various applications, damping from the surrounding fluid severely degrades the performance of mic...
We present an integrated scheme for dielectric drive and read-out of high-Q nanomechanical resonator...
This authoritative book introduces and summarizes the latest models and skills required to design an...
Abstract — This paper presents a method of dynamically balancing tuning fork microresonators, enabli...
This paper presents a method of dynamically balancing tuning fork microresonators, enabling maximiza...
Noise measurements were performed to determine the quality factor ( Q) as a function of gas pressure...
AbstractThree measures of the dynamic response of micro-resonators are considered: gain, sharpness o...
Microelectromechanical Systems (MEMS) are well developed in various fields benefiting from the rapid...
Microelectromechanical systems (MEMS) resonators require fast, accurate, and cost-effective testing ...
We discuss the contribution of phonon interactions in determining the upper limit of f.Q product in ...
We investigate the surface roughness influence on the gain from parametric amplification in nanoreso...
Achieving large signal-noise ratio using low levels of excitation signal is key requirement for prac...
International audienceWe report in this work on unprecedented levels of parametric amplification in ...