Energy dissipation experienced by vibrating microcantilever beams immersed in fluid is strongly dependent on the mode of vibration, with quality factors typically increasing with mode number. Recently, we examined energy dissipation in a new class of cantilever device that embeds a microfluidic channel in its interior—the fundamental mode of vibration only was considered. Due to its importance in practice, we examine the effect of mode number on energy dissipation in these microfluidic beam resonators. Interestingly, and in contrast to other cantilever devices, we find that the quality factor typically decreases with increasing mode number. We explore the underlying physical mechanisms leading to this counterintuitive behavior, and provide ...
Recent experimental and analytical research has shown that higher in-fluid quality factors (Q) are a...
The effect of liquid viscosity and density on the characteristics of laterally excited microcantilev...
Suspended Microchannel Resonators (SMRs) are hollow resonant structures containing an embedded U-sha...
The fluid–structure interaction of resonating microcantilevers immersed in fluid has been widely stu...
Dissipation of mechanical energy underlies the sensitivity of many nanomechanical devices, with envi...
Nanomechanical resonators enable a range of precision measurements in air or vacuum, but strong visc...
Suspended micro channel resonators (SMCs) consist of hollow resonant structures containing an embedd...
Vibrational modes of higher order in micromachined resonators exhibit low damping in liquid environm...
Noise measurements were performed to determine the quality factor Q and the resonating frequency shi...
The functionality of atomic force microscopy (AFM) and nanomechanical sensing can be enhanced using ...
Noise measurements were performed to determine the quality factor Q and the resonating frequency shi...
Noise measurements were performed to determine the quality factor Q and the resonating frequency shi...
The characteristics of microcantilevers vibrating laterally in viscous liquid media are investigated...
Noise measurements were performed to determine the quality factor Q and the resonating frequency shi...
The obtainable quality factor for a nano beam resonator is limited due to internal damping such as t...
Recent experimental and analytical research has shown that higher in-fluid quality factors (Q) are a...
The effect of liquid viscosity and density on the characteristics of laterally excited microcantilev...
Suspended Microchannel Resonators (SMRs) are hollow resonant structures containing an embedded U-sha...
The fluid–structure interaction of resonating microcantilevers immersed in fluid has been widely stu...
Dissipation of mechanical energy underlies the sensitivity of many nanomechanical devices, with envi...
Nanomechanical resonators enable a range of precision measurements in air or vacuum, but strong visc...
Suspended micro channel resonators (SMCs) consist of hollow resonant structures containing an embedd...
Vibrational modes of higher order in micromachined resonators exhibit low damping in liquid environm...
Noise measurements were performed to determine the quality factor Q and the resonating frequency shi...
The functionality of atomic force microscopy (AFM) and nanomechanical sensing can be enhanced using ...
Noise measurements were performed to determine the quality factor Q and the resonating frequency shi...
Noise measurements were performed to determine the quality factor Q and the resonating frequency shi...
The characteristics of microcantilevers vibrating laterally in viscous liquid media are investigated...
Noise measurements were performed to determine the quality factor Q and the resonating frequency shi...
The obtainable quality factor for a nano beam resonator is limited due to internal damping such as t...
Recent experimental and analytical research has shown that higher in-fluid quality factors (Q) are a...
The effect of liquid viscosity and density on the characteristics of laterally excited microcantilev...
Suspended Microchannel Resonators (SMRs) are hollow resonant structures containing an embedded U-sha...