Due to their low mass, high quality factor, and good optical properties, silicon nitride (SiN) micromembrane resonators are widely used in force and mass sensing applications, particularly in optomechanics. The metallization of such membranes would enable an electronic integration with the prospect for exciting new devices, such as optoelectromechanical transducers. Here, we add a single-layer graphene on SiN micromembranes and compare electromechanical coupling and mechanical properties to bare dielectric membranes and to membranes metallized with an aluminium layer. The electrostatic coupling of graphene covered membranes is found to be equal to a perfectly conductive membrane, without significantly adding mass, decreasing the superior me...
SPIE Micro + Nano Materials, Devices, and Applications (2019 ; Melbourne, Australia)Even though grap...
The enormous stiffness and low density of graphene make it an ideal material for nanoelectromechanic...
This thesis describes studies of a two-dimensional (2D), hexagonal arrangement of carbon atoms, grap...
High stress stoichiometric silicon nitride resonators, whose quality factors exceed one million, hav...
Micro- and nano-mechanical resonators with low mass and high vibrational frequency are often studied...
Graphene is an exciting new atomically-thin two dimensional system with applications ranging from ne...
Resonant mechanics of high quality factor (Q) graphene coated silicon nitride devices have been expl...
Graphene is an exciting new atomically-thin two dimensional system with ap-plications ranging from n...
Micro- and nanomechanical resonators play a prominent part in many sensing and signal processing pla...
The aim of the Graphene Nano- Opto- Mechanics and Electronics is to use suspended graphene membranes...
The aim of the Graphene Nano- Opto- Mechanics and Electronics is to use suspended graphene membranes...
The aim of the Graphene Nano- Opto- Mechanics and Electronics is to use suspended graphene membranes...
As we are moving towards nano level devices, there is a greater need to miniaturize resonators. Mini...
Le but de la Nano- Opto- Mécanique et Electronic à base de graphène est d'utiliser des membranes de...
Le but de la Nano- Opto- Mécanique et Electronic à base de graphène est d'utiliser des membranes de...
SPIE Micro + Nano Materials, Devices, and Applications (2019 ; Melbourne, Australia)Even though grap...
The enormous stiffness and low density of graphene make it an ideal material for nanoelectromechanic...
This thesis describes studies of a two-dimensional (2D), hexagonal arrangement of carbon atoms, grap...
High stress stoichiometric silicon nitride resonators, whose quality factors exceed one million, hav...
Micro- and nano-mechanical resonators with low mass and high vibrational frequency are often studied...
Graphene is an exciting new atomically-thin two dimensional system with applications ranging from ne...
Resonant mechanics of high quality factor (Q) graphene coated silicon nitride devices have been expl...
Graphene is an exciting new atomically-thin two dimensional system with ap-plications ranging from n...
Micro- and nanomechanical resonators play a prominent part in many sensing and signal processing pla...
The aim of the Graphene Nano- Opto- Mechanics and Electronics is to use suspended graphene membranes...
The aim of the Graphene Nano- Opto- Mechanics and Electronics is to use suspended graphene membranes...
The aim of the Graphene Nano- Opto- Mechanics and Electronics is to use suspended graphene membranes...
As we are moving towards nano level devices, there is a greater need to miniaturize resonators. Mini...
Le but de la Nano- Opto- Mécanique et Electronic à base de graphène est d'utiliser des membranes de...
Le but de la Nano- Opto- Mécanique et Electronic à base de graphène est d'utiliser des membranes de...
SPIE Micro + Nano Materials, Devices, and Applications (2019 ; Melbourne, Australia)Even though grap...
The enormous stiffness and low density of graphene make it an ideal material for nanoelectromechanic...
This thesis describes studies of a two-dimensional (2D), hexagonal arrangement of carbon atoms, grap...