activity
20102024
most citedThermal Conductivity and Thermal Rectification in Graphene Nanoribbons: a Molecular Dynamics Study

788 citations · 882 across the 5 of their papers we have counts for

collaborators

5 papers

physics.comp-ph2024

FOS: A fully integrated open-source program for Fast Optical Spectrum calculations of nanoparticle media

Daniel Carne, Joseph Peoples, Ziqi Guo +4

FOS, which means light in Greek, is an open-source program for Fast Optical Spectrum calculations of nanoparticle media. This program takes the material properties and a descriptio…

cond-mat.mes-hall20231 cited

Four phonon-dominated near-field radiation in weakly anharmonic polar materials

Dudong Feng, Xiaolong Yang, Zherui Han +1

Inelastic scattering processes typically introduce friction among carriers and reduce the transport properties of photons, phonons, and electrons. However, we predict that in contr…

cond-mat.mtrl-sci201793 cited

Optical generation and detection of local non-equilibrium phonons in suspended graphene

Sean Sullivan, Ajit Vallabhaneni, Iskandar Kholmanov +3

The measured frequencies and intensities of different first- and second- order Raman peaks of suspended graphene are used to show that optical phonons and different acoustic phonon…

cond-mat.mtrl-sci2016

Uncertainty quantification of thermal conductivities from equilibrium molecular dynamics simulations

Zuyuan Wang, Salar Safarkhani, Guang Lin +1

Equilibrium molecular dynamics (EMD) simulations along with the Green-Kubo formula have been widely used to calculate lattice thermal conductivities. Previous studies, however, foc…

cond-mat.mes-hall2010788 cited

Thermal Conductivity and Thermal Rectification in Graphene Nanoribbons: a Molecular Dynamics Study

Jiuning Hu, Xiulin Ruan, Yong P. Chen

We have used molecular dynamics to calculate the thermal conductivity of symmetric and asymmetric graphene nanoribbons (GNRs) of several nanometers in size (up to ~4 nm wide and ~1…