We analyze the response of a nanomechanical resonator to an external drive when it is also coupled to a single-electron transistor (SET). The interaction between the SET electrons and the mechanical resonator depends on the amplitude of the mechanical motion leading to a strongly nonlinear response to the drive which is similar to that of a Duffing oscillator. We show that the average dynamics of the resonator is well described by a simple effective model which incorporates damping and frequency renormalization terms which are amplitude dependent. We also find that for a certain range of parameters the system displays interesting bistable dynamics in which noise arising from charge fluctuations causes the resonator to switch slowly between ...
A single-electron transistor incorporated as part of a nanomechanical resonator represents an extrem...
We show that the coupling between single-electron charging and mechanical motion in a nanoelectromec...
The constant development of mesoscopic physics demands ever more precise and fast measurement and co...
We analyze the response of a nanomechanical resonator to an external drive when it is also coupled t...
Nanoelectromechanical systems (NEMS) comprise nanometer to micrometer scale mechanical oscillators c...
In the last decade we have witnessed exciting technological advances in the fabri-cation and control...
We study a general model describing a self-detecting single electron transistor realized by a suspen...
Nanoelectromechanical resonators have potential applications in sensing, cooling, and mechanical sig...
A single-electron transistor embedded in a nanomechanical resonator represents an extreme limit of e...
We study a general model describing a self-detecting single electron transistor realized by a suspen...
We study a general model describing a self-detecting single electron transistor realized by a suspen...
Nanoelectromechanical resonators have potential applications in sensing, cooling, and mechanicalsign...
In this thesis we present a study of the fluctuations and noise which occur in a particular nanoelec...
We present an analysis of the dynamics of a nanomechanical resonator coupled to a superconducting si...
A single-electron transistor incorporated as part of a nanomechanical resonator represents an extrem...
A single-electron transistor incorporated as part of a nanomechanical resonator represents an extrem...
We show that the coupling between single-electron charging and mechanical motion in a nanoelectromec...
The constant development of mesoscopic physics demands ever more precise and fast measurement and co...
We analyze the response of a nanomechanical resonator to an external drive when it is also coupled t...
Nanoelectromechanical systems (NEMS) comprise nanometer to micrometer scale mechanical oscillators c...
In the last decade we have witnessed exciting technological advances in the fabri-cation and control...
We study a general model describing a self-detecting single electron transistor realized by a suspen...
Nanoelectromechanical resonators have potential applications in sensing, cooling, and mechanical sig...
A single-electron transistor embedded in a nanomechanical resonator represents an extreme limit of e...
We study a general model describing a self-detecting single electron transistor realized by a suspen...
We study a general model describing a self-detecting single electron transistor realized by a suspen...
Nanoelectromechanical resonators have potential applications in sensing, cooling, and mechanicalsign...
In this thesis we present a study of the fluctuations and noise which occur in a particular nanoelec...
We present an analysis of the dynamics of a nanomechanical resonator coupled to a superconducting si...
A single-electron transistor incorporated as part of a nanomechanical resonator represents an extrem...
A single-electron transistor incorporated as part of a nanomechanical resonator represents an extrem...
We show that the coupling between single-electron charging and mechanical motion in a nanoelectromec...
The constant development of mesoscopic physics demands ever more precise and fast measurement and co...