Abstract in Undetermined Acoustic phonons are studied in finite nanowires based on the elastic continuum model. The phonon dispersion relations are compared for different types of approximations both for pure nanowires and nanowire heterostructures including cubic and wurtzite materials. We find that the isotropic approximation highly underestimates the frequency of torsional modes. The impact of heterostructures on the lowest modes is rather weak and can be described by an average of the different structure parameters
The field of low-dimensional structures has been experiencing rapid development in both theoretical ...
Terahertz (THz) and sub-THz coherent acoustic phonons have been successfully used as probes of vario...
Employing a phenomenological long-wavelength approach recently developed, both acoustic and optical ...
Acoustic phonons are studied in finite nanowires based on the elastic continuum model. The phonon di...
We study theoretically acoustic phonon modes in nanowire superlattices (NWSLs) composed of cubic mat...
Acoustic phonon modes of a free-standing rectangular quantum wire of cubic crystals are theoreticall...
We study theoretically the low-energy phonons and the static strain in cylindrical core/shell nanowi...
The fascinating relationship between structure and property in nanowires has enabled a wealth of app...
Based on a modification of the elastic continuum model, a mathematical model describing the processe...
Confined and interface acoustic phonon modes in a cylindrical quantum wire embedded in another mater...
honon spectra in two-dimensional nanomaterials have almost exclusively been computed using density-f...
Application of nano-structures requires a knowledge of their fundamental physical (mechanical, elect...
Ultrafast structural probing has greatly enhanced our understanding of the coupling of atomic motion...
[[abstract]]The phonon spectrum has in recent years attracted much interest in investigating electri...
We study the elastic properties of two-dimensional phononic crystals made of aluminum nanocube latti...
The field of low-dimensional structures has been experiencing rapid development in both theoretical ...
Terahertz (THz) and sub-THz coherent acoustic phonons have been successfully used as probes of vario...
Employing a phenomenological long-wavelength approach recently developed, both acoustic and optical ...
Acoustic phonons are studied in finite nanowires based on the elastic continuum model. The phonon di...
We study theoretically acoustic phonon modes in nanowire superlattices (NWSLs) composed of cubic mat...
Acoustic phonon modes of a free-standing rectangular quantum wire of cubic crystals are theoreticall...
We study theoretically the low-energy phonons and the static strain in cylindrical core/shell nanowi...
The fascinating relationship between structure and property in nanowires has enabled a wealth of app...
Based on a modification of the elastic continuum model, a mathematical model describing the processe...
Confined and interface acoustic phonon modes in a cylindrical quantum wire embedded in another mater...
honon spectra in two-dimensional nanomaterials have almost exclusively been computed using density-f...
Application of nano-structures requires a knowledge of their fundamental physical (mechanical, elect...
Ultrafast structural probing has greatly enhanced our understanding of the coupling of atomic motion...
[[abstract]]The phonon spectrum has in recent years attracted much interest in investigating electri...
We study the elastic properties of two-dimensional phononic crystals made of aluminum nanocube latti...
The field of low-dimensional structures has been experiencing rapid development in both theoretical ...
Terahertz (THz) and sub-THz coherent acoustic phonons have been successfully used as probes of vario...
Employing a phenomenological long-wavelength approach recently developed, both acoustic and optical ...