We report on an electrical detection method of ultrasensitive carbon nanotube mechanical resonators. The noise floor of the detection method is reduced using a RLC resonator and an amplifier based on a high electron mobility transistor cooled at 4.2 K. This allows us to resolve the resonance frequency of nanotube resonators with an unprecedented quality. We show that the noise of the resonance frequency measured at 4.2 K is limited by the resonator itself, and not by the imprecision of the measurement. The Allan deviation reaches ∼10-5 at 125 ms integration time. When comparing the integration time dependence of the Allan deviation to a power law, the exponent approaches ∼1/4. The Allan deviation might be limited by the diffusion of particl...
We demonstrate sensitive and fast electrical measurements of a carbon nanotube mechanical resonator....
We demonstrate sensitive and fast electrical measurements of a carbon nanotube mechanical resonator....
A carbon nanotube (CNT) is a remarkable material and can be thought of as a single-atom thick cylind...
We report on an electrical detection method of ultrasensitive carbon nanotube mechanical resonators....
We report on an electrical detection method of ultrasensitive carbon nanotube mechanical resonators....
Mechanical resonators based on a single carbon nanotube are exceptional sensors of mass and force. T...
Mechanical resonators based on a single carbon nanotube are exceptional sensors of mass and force. T...
Mechanical resonators based on a single carbon nanotube are exceptional sensors of mass and force. ...
Nanoelectromechanical systems (NEMS) have recently been the subjectof much exciting research. They ...
We report fast readout of the motion of a carbon nanotube mechanical resonator. A close-proximity hi...
We have observed the transversal vibration mode of suspended carbon nanotubes at millikelvin tem-per...
Mechanical resonators are widely used as inertial balances to detect small quantities of adsorbed ma...
We have observed the transversal vibration mode of suspended carbon nanotubes at millikelvin tempera...
A carbon nanotube (CNT) is a remarkable material and can be thought of as a single-atom thick cylind...
We measure the mechanical resonances of an as-grown suspended carbon nanotube, detected via electric...
We demonstrate sensitive and fast electrical measurements of a carbon nanotube mechanical resonator....
We demonstrate sensitive and fast electrical measurements of a carbon nanotube mechanical resonator....
A carbon nanotube (CNT) is a remarkable material and can be thought of as a single-atom thick cylind...
We report on an electrical detection method of ultrasensitive carbon nanotube mechanical resonators....
We report on an electrical detection method of ultrasensitive carbon nanotube mechanical resonators....
Mechanical resonators based on a single carbon nanotube are exceptional sensors of mass and force. T...
Mechanical resonators based on a single carbon nanotube are exceptional sensors of mass and force. T...
Mechanical resonators based on a single carbon nanotube are exceptional sensors of mass and force. ...
Nanoelectromechanical systems (NEMS) have recently been the subjectof much exciting research. They ...
We report fast readout of the motion of a carbon nanotube mechanical resonator. A close-proximity hi...
We have observed the transversal vibration mode of suspended carbon nanotubes at millikelvin tem-per...
Mechanical resonators are widely used as inertial balances to detect small quantities of adsorbed ma...
We have observed the transversal vibration mode of suspended carbon nanotubes at millikelvin tempera...
A carbon nanotube (CNT) is a remarkable material and can be thought of as a single-atom thick cylind...
We measure the mechanical resonances of an as-grown suspended carbon nanotube, detected via electric...
We demonstrate sensitive and fast electrical measurements of a carbon nanotube mechanical resonator....
We demonstrate sensitive and fast electrical measurements of a carbon nanotube mechanical resonator....
A carbon nanotube (CNT) is a remarkable material and can be thought of as a single-atom thick cylind...