We report on the characterization of nanometer-scale torsional devices based on individual single-walled carbon nanotubes as the spring elements. The axial shear moduli of the nanotubes are obtained through modeling of device reaction to various amounts of applied electrostatic force and are compared to theoretical values
We report on the characterization of nanometer-scale resonators. Each device incorporates one multiw...
We report on the characterization of nanometer-scale resonators. Each device incorporates one multiw...
International audienceIn this study, the computation of the traction-torsion-bending behavior of sin...
We report on the characterization of nanometer-scale torsional devices based on individual single-wa...
We report on the characterization of torsional oscillators which use multiwalled carbon nanotubes as...
We report on the characterization of torsional oscillators which use multiwalled carbon nanotubes as...
Nanoscale electronics seeks to decrease the critical dimension of devices in order to improve perfor...
The experiments in this thesis present a foundational study of a nanoelectromechanical system that d...
We report on the fabrication of nanometer-scale mechanical devices incorporating multiwalled carbon ...
We report on the fabrication of nanometer-scale mechanical devices incorporating multiwalled carbon ...
The experiments in this thesis present a foundational study of a nanoelectromechanical system that d...
The research work evolved in this dissertation presents (i) a foundational study on the atomic struc...
We report measurements of the shear modulus of each shell and the friction between the two shells of...
We report measurements of the shear modulus of each shell and the friction between the two shells of...
We report on the characterization of nanometer-scale resonators. Each device incorporates one multiw...
We report on the characterization of nanometer-scale resonators. Each device incorporates one multiw...
We report on the characterization of nanometer-scale resonators. Each device incorporates one multiw...
International audienceIn this study, the computation of the traction-torsion-bending behavior of sin...
We report on the characterization of nanometer-scale torsional devices based on individual single-wa...
We report on the characterization of torsional oscillators which use multiwalled carbon nanotubes as...
We report on the characterization of torsional oscillators which use multiwalled carbon nanotubes as...
Nanoscale electronics seeks to decrease the critical dimension of devices in order to improve perfor...
The experiments in this thesis present a foundational study of a nanoelectromechanical system that d...
We report on the fabrication of nanometer-scale mechanical devices incorporating multiwalled carbon ...
We report on the fabrication of nanometer-scale mechanical devices incorporating multiwalled carbon ...
The experiments in this thesis present a foundational study of a nanoelectromechanical system that d...
The research work evolved in this dissertation presents (i) a foundational study on the atomic struc...
We report measurements of the shear modulus of each shell and the friction between the two shells of...
We report measurements of the shear modulus of each shell and the friction between the two shells of...
We report on the characterization of nanometer-scale resonators. Each device incorporates one multiw...
We report on the characterization of nanometer-scale resonators. Each device incorporates one multiw...
We report on the characterization of nanometer-scale resonators. Each device incorporates one multiw...
International audienceIn this study, the computation of the traction-torsion-bending behavior of sin...