First-principles phonon calculations have been widely performed for studying vibrational properties of condensed matter, where the dynamical matrix is commonly constructed via supercell force-constant calculations or the linear response approach. With different manners, a supercell can be introduced in both methods. Unless the supercell is large enough, the interpolated phonon property highly depends on the shape and size of the supercell and the imposed periodicity could give unphysical results that can be easily overlooked. Along this line, we discuss how a traditional method can be used to partition the force constants at the supercell boundary and then propose a more flexible method based on the translational symmetry and interatomic di...
In this work, we discuss two approaches to calculate phonon spectra of crystals within the all-elect...
In this work, we discuss two approaches to calculate phonon spectra of crystals within the all-elect...
We use first-principles density-functional theory calculations to determine the vibrational properti...
We propose a Fourier projection algorithm and demonstrate its superiority for calculation of the pho...
We propose a Fourier projection algorithm and demonstrate its superiority for calculation of the pho...
We propose a Fourier projection algorithm and demonstrate its superiority for calculation of the pho...
We propose a Fourier projection algorithm and demonstrate its superiority for calculation of the pho...
Transport in graphene is strongly limited by the electron-phonon interaction. Accurate description o...
Grimme’s DFT-D dispersion contribution to interatomic forces constants, required for the computation...
peer reviewedWe review calculations and measurements of the phonon dispersion relation of graphite. ...
The phonon dispersion curves of cubic acetylene, tetragonal urea, and monoclinic sodium carbonate ar...
We present the interatomic force constants and phonon dispersions of graphite and graphene from the ...
We review calculations and measurements of the phonon dispersion relation of graphite. First-princip...
A general three-dimensional continuum model of phonons in two-dimensional materials is developed. Ou...
Phonon-dispersion curves for a series of single-wall carbon nanotubes (SWCNT's) have been obtai...
In this work, we discuss two approaches to calculate phonon spectra of crystals within the all-elect...
In this work, we discuss two approaches to calculate phonon spectra of crystals within the all-elect...
We use first-principles density-functional theory calculations to determine the vibrational properti...
We propose a Fourier projection algorithm and demonstrate its superiority for calculation of the pho...
We propose a Fourier projection algorithm and demonstrate its superiority for calculation of the pho...
We propose a Fourier projection algorithm and demonstrate its superiority for calculation of the pho...
We propose a Fourier projection algorithm and demonstrate its superiority for calculation of the pho...
Transport in graphene is strongly limited by the electron-phonon interaction. Accurate description o...
Grimme’s DFT-D dispersion contribution to interatomic forces constants, required for the computation...
peer reviewedWe review calculations and measurements of the phonon dispersion relation of graphite. ...
The phonon dispersion curves of cubic acetylene, tetragonal urea, and monoclinic sodium carbonate ar...
We present the interatomic force constants and phonon dispersions of graphite and graphene from the ...
We review calculations and measurements of the phonon dispersion relation of graphite. First-princip...
A general three-dimensional continuum model of phonons in two-dimensional materials is developed. Ou...
Phonon-dispersion curves for a series of single-wall carbon nanotubes (SWCNT's) have been obtai...
In this work, we discuss two approaches to calculate phonon spectra of crystals within the all-elect...
In this work, we discuss two approaches to calculate phonon spectra of crystals within the all-elect...
We use first-principles density-functional theory calculations to determine the vibrational properti...