Through molecular dynamics simulations, we demonstrate the possibility of internal resonances in single-walled carbon nanotubes. The resonant condition is engineered with a lack of symmetry in the boundary condition and activated by increasing the energy exchange with a coupled thermal bath. The critical temperature threshold for initiating modal interaction is found to be chirality-dependent. By applying the proper orthogonal decomposition algorithm to molecular dynamics time responses, we show how the thermal fluctuations influence the vibrational behaviour of the nanotube leading to both flexural–flexural and flexural–longitudinal resonances. Understanding the interaction between nanotube resonators and the thermal bath is crucial for de...
The temperature and frequency dependence of the flexural mode quality factors (Q) of doubly clamped ...
A vibrational analysis of three types of carbon nanotube-based nanomechanical resonator is presented...
We utilize classical molecular dynamics to study energy dissipation (the Q-factors) of carbon nanotu...
This work examines the quality factors (Q factors) of resonance associated with the axial and transv...
This work examines the quality factors (Q factors) of resonance associated with the axial and transv...
This work examines the quality factors (Q factors) of resonance associated with the axial and transv...
The capabilities of the mechanical resonator-based nanosensors in detecting ultra-small mass or forc...
This work examines the quality factors (Q factors) of resonance associated with the axial and transv...
This paper presents an investigation on the dynamical properties of single-walled carbon nanotubes (...
AbstractAtomic-scale finite element analyses show that 2:1 internal resonance mechanism exists in a ...
Carbon nanotubes (CNTs) were discovered by Iijima (1991). At present, CNT is the chief research subj...
FAPESP - FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULOCNPQ - CONSELHO NACIONAL DE DESENVOLVIM...
Nanoelectromechanical systems (NEMS) made from low-dimensional materials based on carbon, transition...
Nanoscale mechanical resonator-based nanoelectromechanical systems have been reported with ultrahigh...
We report the first study on the thermal behavior of the stiffness of individual carbon nanotubes, w...
The temperature and frequency dependence of the flexural mode quality factors (Q) of doubly clamped ...
A vibrational analysis of three types of carbon nanotube-based nanomechanical resonator is presented...
We utilize classical molecular dynamics to study energy dissipation (the Q-factors) of carbon nanotu...
This work examines the quality factors (Q factors) of resonance associated with the axial and transv...
This work examines the quality factors (Q factors) of resonance associated with the axial and transv...
This work examines the quality factors (Q factors) of resonance associated with the axial and transv...
The capabilities of the mechanical resonator-based nanosensors in detecting ultra-small mass or forc...
This work examines the quality factors (Q factors) of resonance associated with the axial and transv...
This paper presents an investigation on the dynamical properties of single-walled carbon nanotubes (...
AbstractAtomic-scale finite element analyses show that 2:1 internal resonance mechanism exists in a ...
Carbon nanotubes (CNTs) were discovered by Iijima (1991). At present, CNT is the chief research subj...
FAPESP - FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULOCNPQ - CONSELHO NACIONAL DE DESENVOLVIM...
Nanoelectromechanical systems (NEMS) made from low-dimensional materials based on carbon, transition...
Nanoscale mechanical resonator-based nanoelectromechanical systems have been reported with ultrahigh...
We report the first study on the thermal behavior of the stiffness of individual carbon nanotubes, w...
The temperature and frequency dependence of the flexural mode quality factors (Q) of doubly clamped ...
A vibrational analysis of three types of carbon nanotube-based nanomechanical resonator is presented...
We utilize classical molecular dynamics to study energy dissipation (the Q-factors) of carbon nanotu...