We utilize classical molecular dynamics to study flexural, or transverse wave propagation in monolayer graphene sheets and compare the resulting dispersion relationships to those expected from continuum thin plate theory. In doing so, we determine that regardless of the chirality for monolayer graphene, transverse waves exhibit a dispersion relationship that corresponds to the lowest order antisymmetric (A0) mode of wave propagation in a thin plate with plate thickness of h = 0.104 nm. Finally, we find that the achievable wave speeds in monolayer graphene are found to exceed those reported previously for single walled carbon nanotubes, while the frequency of wave propagation in the graphene monolayer is found to reach the terahertz range, s...
This work addresses a fundamental question: To what extent is graphene graphite? In particular does ...
Finite-temperature properties of graphene monolayers under tensile stress have been studied by path-...
Surface plasmon-polariton waves with low-phase speed in carbon nanostructures can be utilized for th...
This paper presents the strong nonlocal scale effect on the flexural wave propagation in a monolayer...
Free vibration and wave analysis of thick rectangular graphene are studied by employing the wave pro...
In this article, an ultrasonic wave propagation in graphene sheet is studied using nonlocal elastici...
Wave propagation in graphene sheet embedded in elastic medium (polymer matrix) has been a topic of g...
This article presents the strong, nonlocal scale effect on the terahertz flexural wave dispersion ch...
Ultrasonic wave propagation in a graphene sheet, which is embedded in an elastic medium, is studied ...
Ultrasonic wave propagation in a graphene sheet, which is embedded in an elastic medium, is studied ...
An analytic formula is derived for the elastic bending modulus of monolayer graphene based on an emp...
The present work deals with an ultrasonic type of wave propagation characteristics of monolayer grap...
Graphene nanoribbons (GNRs) are novel interesting nanostructures for the electronics industry, where...
Here, using ultrafast electron crystallography (UEC), we report the observation of rippling dynamics...
We investigate the propagation of surface waves along a spatially dispersive graphene sheet, includi...
This work addresses a fundamental question: To what extent is graphene graphite? In particular does ...
Finite-temperature properties of graphene monolayers under tensile stress have been studied by path-...
Surface plasmon-polariton waves with low-phase speed in carbon nanostructures can be utilized for th...
This paper presents the strong nonlocal scale effect on the flexural wave propagation in a monolayer...
Free vibration and wave analysis of thick rectangular graphene are studied by employing the wave pro...
In this article, an ultrasonic wave propagation in graphene sheet is studied using nonlocal elastici...
Wave propagation in graphene sheet embedded in elastic medium (polymer matrix) has been a topic of g...
This article presents the strong, nonlocal scale effect on the terahertz flexural wave dispersion ch...
Ultrasonic wave propagation in a graphene sheet, which is embedded in an elastic medium, is studied ...
Ultrasonic wave propagation in a graphene sheet, which is embedded in an elastic medium, is studied ...
An analytic formula is derived for the elastic bending modulus of monolayer graphene based on an emp...
The present work deals with an ultrasonic type of wave propagation characteristics of monolayer grap...
Graphene nanoribbons (GNRs) are novel interesting nanostructures for the electronics industry, where...
Here, using ultrafast electron crystallography (UEC), we report the observation of rippling dynamics...
We investigate the propagation of surface waves along a spatially dispersive graphene sheet, includi...
This work addresses a fundamental question: To what extent is graphene graphite? In particular does ...
Finite-temperature properties of graphene monolayers under tensile stress have been studied by path-...
Surface plasmon-polariton waves with low-phase speed in carbon nanostructures can be utilized for th...