We present an extensive study shedding light on the role of surface and bulk losses in micromechanical resonators. We fabricate thin silicon nitride membranes of different sizes and we coat them with different thicknesses of metal. We later characterize the 81 lowest out-of-plane flexural vibrational modes to achieve a total of more than 3000 experimental points that allow us to quantify the contribution of surface and volume intrinsic (material related) losses in MEMS resonators. We conclude that the losses in the interface between silicon nitride and aluminum is a very important contributor to the overall energy loss
[[abstract]]We report measurements of intrinsic dissipation in micron-sized suspended resonators mac...
Over the past years there has been great progression in the field of micro- and nanomechanics with d...
We study the mechanical dissipation of the fundamental mode of millimeter-sized, high quality-factor...
We have fabricated circular silicon nitride drums of varying diameter (20 μm to 1 mm) and thickness ...
In the context of a recoil damping analysis, we have designed and produced a membrane resonator equi...
Micro- and nanomechanical resonators play a prominent part in many sensing and signal processing pla...
We investigate the influence of gold thin-films subsequently deposited on a set of initially bare, d...
This dissertation investigates dissipation in microelectromechanical (MEMS) resonators via detailed ...
AbstractThis paper describes characterization of a thickness extensional mode in a piezoelectrically...
Cataloged from PDF version of article.In this work, we propose a novel method to increase the quali...
The growing interest in the field of nanomechanical resonators stems from their potential use as hig...
The work in this thesis aims to uncover energy loss mechanisms in MEMS-based piezoelectric contour-m...
The damping rates of high quality factor nanomechanical resonators are well beyond intrinsic limits....
Micro resonators are important components in many micro electro mechanical system (MEMS) application...
State-of-the-art nanomechanical resonators are heralded as a central component for next-generation c...
[[abstract]]We report measurements of intrinsic dissipation in micron-sized suspended resonators mac...
Over the past years there has been great progression in the field of micro- and nanomechanics with d...
We study the mechanical dissipation of the fundamental mode of millimeter-sized, high quality-factor...
We have fabricated circular silicon nitride drums of varying diameter (20 μm to 1 mm) and thickness ...
In the context of a recoil damping analysis, we have designed and produced a membrane resonator equi...
Micro- and nanomechanical resonators play a prominent part in many sensing and signal processing pla...
We investigate the influence of gold thin-films subsequently deposited on a set of initially bare, d...
This dissertation investigates dissipation in microelectromechanical (MEMS) resonators via detailed ...
AbstractThis paper describes characterization of a thickness extensional mode in a piezoelectrically...
Cataloged from PDF version of article.In this work, we propose a novel method to increase the quali...
The growing interest in the field of nanomechanical resonators stems from their potential use as hig...
The work in this thesis aims to uncover energy loss mechanisms in MEMS-based piezoelectric contour-m...
The damping rates of high quality factor nanomechanical resonators are well beyond intrinsic limits....
Micro resonators are important components in many micro electro mechanical system (MEMS) application...
State-of-the-art nanomechanical resonators are heralded as a central component for next-generation c...
[[abstract]]We report measurements of intrinsic dissipation in micron-sized suspended resonators mac...
Over the past years there has been great progression in the field of micro- and nanomechanics with d...
We study the mechanical dissipation of the fundamental mode of millimeter-sized, high quality-factor...