We study a general model describing a self-detecting single electron transistor realized by a suspended carbon nanotube actuated by a nearby antenna. The main features of the device, recently observed in a number of experiments, are accurately reproduced. When the device is in a low current-carrying state, a peak in the current signals a mechanical resonance. On the contrary, a dip in the current is found in high current-carrying states. In the nonlinear vibration regime of the resonator, we are able to reproduce quantitatively the characteristic asymmetric shape of the current-frequency curves. We show that the nonlinear effects coming out at high values of the antenna amplitude are related to the effective nonlinear force induced by the e...
We propose a microscopic model for a nanoelectromechanical system made by a radio-frequency driven s...
We propose a microscopic model for a nanoelectromechanical system made by a radio-frequency driven s...
We propose a microscopic model for a nanoelectromechanical system made by a radio-frequency driven s...
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...
Nanoscale resonators that oscillate at high frequencies are useful in many measurement applications....
Nanoscale resonators that oscillate at high frequencies are useful in many measurement applications....
A carbon nanotube (CNT) is a remarkable material and can be thought of as a single-atom thick cylind...
Nanoelectromechanical resonators have potential applications in sensing, cooling, and mechanical sig...
Nanoelectromechanical resonators have potential applications in sensing, cooling, and mechanicalsign...
A carbon nanotube (CNT) is a remarkable material and can be thought of as a single-atom thick cylind...
The constant development of mesoscopic physics demands ever more precise and fast measurement and co...
Transport measurements allow sensitive detection of nanomechanical motion of suspended carbon nanotu...
We have observed the transversal vibration mode of suspended carbon nanotubes at millikelvin tempera...
We analyze the response of a nanomechanical resonator to an external drive when it is also coupled t...
We propose a microscopic model for a nanoelectromechanical system made by a radio-frequency driven s...
We propose a microscopic model for a nanoelectromechanical system made by a radio-frequency driven s...
We propose a microscopic model for a nanoelectromechanical system made by a radio-frequency driven s...
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...
Nanoscale resonators that oscillate at high frequencies are useful in many measurement applications....
Nanoscale resonators that oscillate at high frequencies are useful in many measurement applications....
A carbon nanotube (CNT) is a remarkable material and can be thought of as a single-atom thick cylind...
Nanoelectromechanical resonators have potential applications in sensing, cooling, and mechanical sig...
Nanoelectromechanical resonators have potential applications in sensing, cooling, and mechanicalsign...
A carbon nanotube (CNT) is a remarkable material and can be thought of as a single-atom thick cylind...
The constant development of mesoscopic physics demands ever more precise and fast measurement and co...
Transport measurements allow sensitive detection of nanomechanical motion of suspended carbon nanotu...
We have observed the transversal vibration mode of suspended carbon nanotubes at millikelvin tempera...
We analyze the response of a nanomechanical resonator to an external drive when it is also coupled t...
We propose a microscopic model for a nanoelectromechanical system made by a radio-frequency driven s...
We propose a microscopic model for a nanoelectromechanical system made by a radio-frequency driven s...
We propose a microscopic model for a nanoelectromechanical system made by a radio-frequency driven s...