An understanding of the dominant dissipative mechanisms is crucial for the design of a high-Q doubly clamped nanobeam resonator to be operated in air. We focus on quantifying analytically the viscous losses—the squeeze film damping and drag force damping—that limit the net quality factor of a beam resonator, vibrating in its flexural fundamental mode with the surrounding fluid as air at atmospheric pressure. Specifically, drag force damping dominates at smaller beam widths and squeeze film losses dominate at larger beam widths, with no significant contribution from structural losses and acoustic radiation losses. The combined viscous losses agree well with the experimentally measured Q of the resonator over a large range of beam widths, wit...
Mechanical resonators with high quality factors are widely used in precision experiments, ranging fr...
There are various energy dissipation mechanisms that affect the dynamic response of microstructures ...
The goal of the research described in this thesis was to investigate the basis of dissipation diluti...
An understanding of the dominant dissipative mechanisms is crucial for the design of a high-Q doubly...
An understanding of the dominant dissipative mechanisms is crucial for the design of a high-Q doubly...
Recent thrust in the design of sensitive sensors and actuators have motivated many researchers to op...
Abstract: An analysis of the air-damping effect on the frequency response of amicromachined beam res...
Design of high quality factor (Q) micromechanical resonators depends critically on our understanding...
Design of high quality factor (Q) micromechanical resonators depends critically on our understanding...
Design of high quality factor (Q) micromechanical resonators depends critically on our understanding...
Design of high quality factor (Q) micromechanical resonators depends critically on our understanding...
Micro resonators have been extensively applied in MEMS industry over the past recent three decades. ...
The fluid–structure interaction of resonating microcantilevers immersed in fluid has been widely stu...
We present a comprehensive study of nanoelectromechanical systems in pressurized fluids. Resonant re...
Improving the quality factor of the mechanical oscillations of micron scale beams in a viscous fluid...
Mechanical resonators with high quality factors are widely used in precision experiments, ranging fr...
There are various energy dissipation mechanisms that affect the dynamic response of microstructures ...
The goal of the research described in this thesis was to investigate the basis of dissipation diluti...
An understanding of the dominant dissipative mechanisms is crucial for the design of a high-Q doubly...
An understanding of the dominant dissipative mechanisms is crucial for the design of a high-Q doubly...
Recent thrust in the design of sensitive sensors and actuators have motivated many researchers to op...
Abstract: An analysis of the air-damping effect on the frequency response of amicromachined beam res...
Design of high quality factor (Q) micromechanical resonators depends critically on our understanding...
Design of high quality factor (Q) micromechanical resonators depends critically on our understanding...
Design of high quality factor (Q) micromechanical resonators depends critically on our understanding...
Design of high quality factor (Q) micromechanical resonators depends critically on our understanding...
Micro resonators have been extensively applied in MEMS industry over the past recent three decades. ...
The fluid–structure interaction of resonating microcantilevers immersed in fluid has been widely stu...
We present a comprehensive study of nanoelectromechanical systems in pressurized fluids. Resonant re...
Improving the quality factor of the mechanical oscillations of micron scale beams in a viscous fluid...
Mechanical resonators with high quality factors are widely used in precision experiments, ranging fr...
There are various energy dissipation mechanisms that affect the dynamic response of microstructures ...
The goal of the research described in this thesis was to investigate the basis of dissipation diluti...