We study theoretically the low-energy phonons and the static strain in cylindrical core/shell nanowires (NWs). Assuming pseudomorphic growth, isotropic media, and a force-free wire surface, we derive algebraic expressions for the dispersion relations, the displacement fields, and the stress and strain components from linear elasticity theory. Our results apply to NWs with arbitrary radii and arbitrary elastic constants for both core and shell. The expressions for the static strain are consistent with experiments, simulations, and previous analytical investigations; those for phonons are consistent with known results for homogeneous NWs. Among other things, we show that the dispersion relations of the torsional, longitudinal, and flexural mo...
Acoustic phonon modes of a free-standing rectangular quantum wire of cubic crystals are theoreticall...
Core-shell nanowires (NWs) with asymmetric shells allow for strain engineering of NW properties beca...
The growth of heteroepitaxially strained semiconductors at the nanoscale enables tailoring of materi...
We settle a general expression for the Hamiltonian of the electron-zone-center optical phonon deform...
Acoustic phonons are studied in finite nanowires based on the elastic continuum model. The phonon di...
The authors study the elastic deformation held in lattice-mismatched core-shell nanowires with singl...
The authors study the elastic deformation held in lattice-mismatched core-shell nanowires with singl...
Abstract in Undetermined Acoustic phonons are studied in finite nanowires based on the elastic conti...
In the past decade, core/shell nanowires (NWs) have attracted much attention due to the broad variet...
We study theoretically acoustic phonon modes in nanowire superlattices (NWSLs) composed of cubic mat...
[[abstract]]The phonon spectrum has in recent years attracted much interest in investigating electri...
Thanks to their unique morphology, nanowires have enabled integration of materials in a way that was...
Employing crystal plasticity theory and micromechanics inclusion theory, we developed a full-strain ...
We propose a comprehensive description of the strain configuration induced by the lattice mismatch i...
It has been shown in recent experiments that electronic transport through a gold monatomic nanowire ...
Acoustic phonon modes of a free-standing rectangular quantum wire of cubic crystals are theoreticall...
Core-shell nanowires (NWs) with asymmetric shells allow for strain engineering of NW properties beca...
The growth of heteroepitaxially strained semiconductors at the nanoscale enables tailoring of materi...
We settle a general expression for the Hamiltonian of the electron-zone-center optical phonon deform...
Acoustic phonons are studied in finite nanowires based on the elastic continuum model. The phonon di...
The authors study the elastic deformation held in lattice-mismatched core-shell nanowires with singl...
The authors study the elastic deformation held in lattice-mismatched core-shell nanowires with singl...
Abstract in Undetermined Acoustic phonons are studied in finite nanowires based on the elastic conti...
In the past decade, core/shell nanowires (NWs) have attracted much attention due to the broad variet...
We study theoretically acoustic phonon modes in nanowire superlattices (NWSLs) composed of cubic mat...
[[abstract]]The phonon spectrum has in recent years attracted much interest in investigating electri...
Thanks to their unique morphology, nanowires have enabled integration of materials in a way that was...
Employing crystal plasticity theory and micromechanics inclusion theory, we developed a full-strain ...
We propose a comprehensive description of the strain configuration induced by the lattice mismatch i...
It has been shown in recent experiments that electronic transport through a gold monatomic nanowire ...
Acoustic phonon modes of a free-standing rectangular quantum wire of cubic crystals are theoreticall...
Core-shell nanowires (NWs) with asymmetric shells allow for strain engineering of NW properties beca...
The growth of heteroepitaxially strained semiconductors at the nanoscale enables tailoring of materi...