This paper presents a study of dephasing of an underdamped nanomechanical resonator subject to random mass loading of small particles. A frequency noise model is presented which describes dephasing due to the attachment and detachment of particles at random points and particle diffusion along the resonator. This situation is commonly encountered in current mass measurement experiments using nanoelectromechanical (NEM) resonators. The conditions which can lead to inhomogeneous broadening and fine structure in the modes\u27 absorption spectra are discussed. It is also shown that the spectra of the higher-order cumulants of the (complex) vibrational mode amplitude are sensitive to the parameters characterizing the frequency noise process. Henc...
The shift of resonant frequencies is the working mechanism of a mass resonator sensor. The shift is ...
In this paper we analyze adsorption-desorption (AD) noise in resonant microelectromechanical structu...
International audienceDue to their physical properties, nanomechanical sensors (NEMS) can achieve ma...
This paper presents a study of dephasing of an underdamped nanomechanical resonator subject to rando...
We study resonant response of an underdamped nanomechanical resonator with fluctuating frequency. Th...
I summarize the results of my research in the subjects of nonlinear mechanics of grapheneresonators,...
We study resonant response of an underdamped nanomechanical resonator with fluctuating frequency. Th...
The emergence of nanoelectromechanical systems has enabled the development of sensors capable of det...
Scientists in the field of NEMS today are focused on the problem of achieving the lowest detectable ...
In the last two decades, nano-mechanical resonators have risen as highly promising devices for mass ...
The emergence of nanoelectromechanical systems has enabled the development of sensors capable of det...
International audienceDue to their physical properties, nanomechanical sensors (NEMS) can achieve ma...
International audienceDue to their physical properties, nanomechanical sensors (NEMS) can achieve ma...
Modeling of adsorption and desorption in microelectromechanical systems (MEMS) generally is crucial ...
International audienceDue to their physical properties, nanomechanical sensors (NEMS) can achieve ma...
The shift of resonant frequencies is the working mechanism of a mass resonator sensor. The shift is ...
In this paper we analyze adsorption-desorption (AD) noise in resonant microelectromechanical structu...
International audienceDue to their physical properties, nanomechanical sensors (NEMS) can achieve ma...
This paper presents a study of dephasing of an underdamped nanomechanical resonator subject to rando...
We study resonant response of an underdamped nanomechanical resonator with fluctuating frequency. Th...
I summarize the results of my research in the subjects of nonlinear mechanics of grapheneresonators,...
We study resonant response of an underdamped nanomechanical resonator with fluctuating frequency. Th...
The emergence of nanoelectromechanical systems has enabled the development of sensors capable of det...
Scientists in the field of NEMS today are focused on the problem of achieving the lowest detectable ...
In the last two decades, nano-mechanical resonators have risen as highly promising devices for mass ...
The emergence of nanoelectromechanical systems has enabled the development of sensors capable of det...
International audienceDue to their physical properties, nanomechanical sensors (NEMS) can achieve ma...
International audienceDue to their physical properties, nanomechanical sensors (NEMS) can achieve ma...
Modeling of adsorption and desorption in microelectromechanical systems (MEMS) generally is crucial ...
International audienceDue to their physical properties, nanomechanical sensors (NEMS) can achieve ma...
The shift of resonant frequencies is the working mechanism of a mass resonator sensor. The shift is ...
In this paper we analyze adsorption-desorption (AD) noise in resonant microelectromechanical structu...
International audienceDue to their physical properties, nanomechanical sensors (NEMS) can achieve ma...