The ultrastrong coupling of single-electron tunneling and nanomechanical motion opens exciting opportunities to explore fundamental questions and develop new platforms for quantum technologies. We have measured and modeled this electromechanical coupling in a fully suspended carbon nanotube device and report a ratio of gm/ωm=2.72\ub10.14, where gm/2π=0.80\ub10.04GHz is the coupling strength and ωm/2π=294.5MHz is the mechanical resonance frequency. This is well within the ultrastrong coupling regime and the highest among all other electromechanical platforms. We show that, although this regime was present in similar fully suspended carbon nanotube devices, it went unnoticed. Even higher ratios could be achieved with improvement on device des...
The quantum behaviour of mechanical resonators is a new and emerging field driven by recent experime...
Over the last two decades nanotechnology has been a very active field of scientific research, both f...
Cavity optomechanics allows the characterization of a vibration mode, its cooling and quantum manipu...
The ultrastrong coupling of single-electron tunneling and nanomechanical motion opens exciting oppor...
Carbon nanotubes are excellent nano-electromechanical systems, combining high resonance frequency, l...
pseudogap energy scale (23, 29) coexist with these low-energy dispersive modulations at all temperat...
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....
The experimental observation of quantum phenomena in mechanical degrees of freedom is difficult, as ...
A carbon nanotube (CNT) is a remarkable material and can be thought of as a single-atom thick cylind...
We consider a nanoelectromechanical weak link composed of a carbon nanotube suspended above a trench...
A suspended, doubly clamped single-wall carbon nanotube is characterized at cryogenic temperatures. ...
Ultra clean and freely suspended carbon nanotubes provide an ideal model system for electronical tra...
A single-electron transistor embedded in a nanomechanical resonator represents an extreme limit of e...
Hybrid nanomechanical systems are promising candidates for quantum computation and quantum informati...
The quantum behaviour of mechanical resonators is a new and emerging field driven by recent experime...
Over the last two decades nanotechnology has been a very active field of scientific research, both f...
Cavity optomechanics allows the characterization of a vibration mode, its cooling and quantum manipu...
The ultrastrong coupling of single-electron tunneling and nanomechanical motion opens exciting oppor...
Carbon nanotubes are excellent nano-electromechanical systems, combining high resonance frequency, l...
pseudogap energy scale (23, 29) coexist with these low-energy dispersive modulations at all temperat...
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....
The experimental observation of quantum phenomena in mechanical degrees of freedom is difficult, as ...
A carbon nanotube (CNT) is a remarkable material and can be thought of as a single-atom thick cylind...
We consider a nanoelectromechanical weak link composed of a carbon nanotube suspended above a trench...
A suspended, doubly clamped single-wall carbon nanotube is characterized at cryogenic temperatures. ...
Ultra clean and freely suspended carbon nanotubes provide an ideal model system for electronical tra...
A single-electron transistor embedded in a nanomechanical resonator represents an extreme limit of e...
Hybrid nanomechanical systems are promising candidates for quantum computation and quantum informati...
The quantum behaviour of mechanical resonators is a new and emerging field driven by recent experime...
Over the last two decades nanotechnology has been a very active field of scientific research, both f...
Cavity optomechanics allows the characterization of a vibration mode, its cooling and quantum manipu...