We report a novel mass sensor based on detecting the luminescence from micro/nano electromechanical resonators. Multi-physics simulation has been conducted to elucidate this concept. It is found that the added mass affects both the resonant frequency and oscillating amplitude of the mechanical resonator. However we mainly use the change of oscillating amplitude to detect the added mass by observing varied optical intensity. For the device simulated, the sensitivity ((f=f0)=m per microgram) is 2% g1 if using frequency measurement through electronic circuits, while the sensitivity ((IL=I0)=m per microgram) is 377% g1 using amplitude measurement through the proposed optical method
In this work, we demonstrate the potential of a piezoelectric resonator for developing a low-cost se...
This thesis describes new ways of operating high-frequency nanomechanical resonators and using them ...
International audienceThis paper investigates alternative mass sensing techniques that take advantag...
A mass sensor is provided for determining the mass of small objects. The mass sensor has a plurality...
International audienceThis article presents a comprehensive study and design methodology of co-integ...
As the potential emerging technology for next generation integrated resonant sensors and frequency r...
Micro-mechanical sensors are typically fabricated both in large numbers and economically using the p...
Nanomechanical resonators having small mass, high resonance frequency and low damping rate are widel...
The mass sensing superiority of a micro-/nano-mechanical resonator sensor over conventional mass spe...
The nanofabrication of a nanomachined holed structure localized on the free end of a microcantilever...
Nanomechanical resonators can now be realized that achieve fundamental resonance frequencies exceedi...
An optical modulator is proposed using a double-clamped nanoelectromechanical resonator. Electromech...
The mass sensing superiority of a micro-/nano-mechanical resonator sensor over conventional mass spe...
The change in the mass, achieved with focused ion beam (FIB) milling, of one of a pair of electrosta...
This paper presents numerical analysis of an in-plane resonant Nano-Electro-Mechanical (NEM) sensor ...
In this work, we demonstrate the potential of a piezoelectric resonator for developing a low-cost se...
This thesis describes new ways of operating high-frequency nanomechanical resonators and using them ...
International audienceThis paper investigates alternative mass sensing techniques that take advantag...
A mass sensor is provided for determining the mass of small objects. The mass sensor has a plurality...
International audienceThis article presents a comprehensive study and design methodology of co-integ...
As the potential emerging technology for next generation integrated resonant sensors and frequency r...
Micro-mechanical sensors are typically fabricated both in large numbers and economically using the p...
Nanomechanical resonators having small mass, high resonance frequency and low damping rate are widel...
The mass sensing superiority of a micro-/nano-mechanical resonator sensor over conventional mass spe...
The nanofabrication of a nanomachined holed structure localized on the free end of a microcantilever...
Nanomechanical resonators can now be realized that achieve fundamental resonance frequencies exceedi...
An optical modulator is proposed using a double-clamped nanoelectromechanical resonator. Electromech...
The mass sensing superiority of a micro-/nano-mechanical resonator sensor over conventional mass spe...
The change in the mass, achieved with focused ion beam (FIB) milling, of one of a pair of electrosta...
This paper presents numerical analysis of an in-plane resonant Nano-Electro-Mechanical (NEM) sensor ...
In this work, we demonstrate the potential of a piezoelectric resonator for developing a low-cost se...
This thesis describes new ways of operating high-frequency nanomechanical resonators and using them ...
International audienceThis paper investigates alternative mass sensing techniques that take advantag...