We have succeeded in integrating a single-electron transistor (SET) and a nanomechanical resonator into one device by suspending the SET island. In this case the island has flexural modes whose resonance frequencies depend on the material parameters and the island dimensions. The device is made of Al and can be studied in both the normal and superconducting states allowing observation of various physical phenomena. By driving the resonator with an external force at a frequency close to the resonance frequency of the fundamental flexural mode, we observe a characteristic feature in the dc SET transport, which is due to the mechanical resonance of the island. The resonance frequency as high as 0.5 GHz was detected. The observed response is re...
The single-electron transistor is the fastest and most sensitive electrometer available today1,2. Si...
The constant development of mesoscopic physics demands ever more precise and fast measurement and co...
A single-electron tunneling (SET) device with a nanoscale central island that can move with respect ...
We have fabricated an Al based single-electron transistor transistor (SET) whose island is suspended...
We describe single-electron tunneling through molecular structures under the influence of nanomechan...
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....
We investigate a superconducting single-electron transistor capacitively coupled to a nanomechanical...
AbstractResearchers from the University of California at Santa Barbara have combined a single electr...
Small metal particles embedded in a material subject to an external electric field can contribute to...
Nanoelectromechanical resonators have potential applications in sensing, cooling, and mechanical sig...
Since the development of quantum mechanics, there has been debate over the extent to which it can be...
The goal of this paper is to review in brief the basic physics of nanoelectronic device single-elect...
The goal of this paper is to review in brief the basic physics of nanoelectronic device single-elect...
We analyze the response of a nanomechanical resonator to an external drive when it is also coupled t...
The single-electron transistor is the fastest and most sensitive electrometer available today1,2. Si...
The constant development of mesoscopic physics demands ever more precise and fast measurement and co...
A single-electron tunneling (SET) device with a nanoscale central island that can move with respect ...
We have fabricated an Al based single-electron transistor transistor (SET) whose island is suspended...
We describe single-electron tunneling through molecular structures under the influence of nanomechan...
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....
We investigate a superconducting single-electron transistor capacitively coupled to a nanomechanical...
AbstractResearchers from the University of California at Santa Barbara have combined a single electr...
Small metal particles embedded in a material subject to an external electric field can contribute to...
Nanoelectromechanical resonators have potential applications in sensing, cooling, and mechanical sig...
Since the development of quantum mechanics, there has been debate over the extent to which it can be...
The goal of this paper is to review in brief the basic physics of nanoelectronic device single-elect...
The goal of this paper is to review in brief the basic physics of nanoelectronic device single-elect...
We analyze the response of a nanomechanical resonator to an external drive when it is also coupled t...
The single-electron transistor is the fastest and most sensitive electrometer available today1,2. Si...
The constant development of mesoscopic physics demands ever more precise and fast measurement and co...
A single-electron tunneling (SET) device with a nanoscale central island that can move with respect ...