We investigate theoretically how single molecule spectroscopy techniques can be used to perform fast and high resolution displacement detection and manipulation of nanomechanical oscillators, such as singly clamped carbon nanotubes. We analyze the possibility of real time displacement detection by the luminescence signal and of displacement fluctuations by the degree of second order coherence. Estimates of the electromechanical coupling constant indicate that intriguing regimes of strong backaction between the two-level system of a molecule and the oscillator can be realized
The hollow core inside a carbon nanotube(1) can be used to confine single molecules(2,3) and it is n...
A single-electron transistor incorporated as part of a nanomechanical resonator represents an extrem...
The discovery of carbon nanotubes and C60 fullerenes has created an enormous impact on possible new ...
We investigate theoretically how single molecule spectroscopy techniques can be used to perform fast...
Transport measurements allow sensitive detection of nanomechanical motion of suspended carbon nanotu...
A carbon nanotube (CNT) is a remarkable material and can be thought of as a single-atom thick cylind...
Treball final de màster oficial fet en col·laboració amb Universitat Autònoma de Barcelona (UAB), Un...
The constant development of mesoscopic physics demands ever more precise and fast measurement and co...
The optical absorption spectra of nanomotors made from double-wall carbon nanotubes have been calcul...
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....
Mechanical resonators based on a single carbon nanotube are exceptional sensors of mass and force. T...
Here we show the detection of single gas molecules inside a carbon nanotube based on the change inre...
Mechanical resonators based on carbon nanotube or graphene hold promise for many scientific and tech...
Mechanical resonators based on a single carbon nanotube are exceptional sensors of mass and force. T...
The hollow core inside a carbon nanotube(1) can be used to confine single molecules(2,3) and it is n...
A single-electron transistor incorporated as part of a nanomechanical resonator represents an extrem...
The discovery of carbon nanotubes and C60 fullerenes has created an enormous impact on possible new ...
We investigate theoretically how single molecule spectroscopy techniques can be used to perform fast...
Transport measurements allow sensitive detection of nanomechanical motion of suspended carbon nanotu...
A carbon nanotube (CNT) is a remarkable material and can be thought of as a single-atom thick cylind...
Treball final de màster oficial fet en col·laboració amb Universitat Autònoma de Barcelona (UAB), Un...
The constant development of mesoscopic physics demands ever more precise and fast measurement and co...
The optical absorption spectra of nanomotors made from double-wall carbon nanotubes have been calcul...
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....
Mechanical resonators based on a single carbon nanotube are exceptional sensors of mass and force. T...
Here we show the detection of single gas molecules inside a carbon nanotube based on the change inre...
Mechanical resonators based on carbon nanotube or graphene hold promise for many scientific and tech...
Mechanical resonators based on a single carbon nanotube are exceptional sensors of mass and force. T...
The hollow core inside a carbon nanotube(1) can be used to confine single molecules(2,3) and it is n...
A single-electron transistor incorporated as part of a nanomechanical resonator represents an extrem...
The discovery of carbon nanotubes and C60 fullerenes has created an enormous impact on possible new ...