Crystalline solids are solids in which the ionic cores of the atoms are arranged periodically. The dynamics of a test electron in a crystalline solid can be conveniently analyzed by using the Bloch-Floquet transform, while the localization properties of electrons are better described by using Wannier functions. The latter can also be obtained by minimizing a suitable localization functional, yielding a convenient numerical algorithm. Macroscopic transport properties of electrons in crystalline solids are derived, by using adiabatic theory, from the analysis of a perturbed Hamiltonian, which includes the effect of external macroscopic or slowly-varying electromagnetic potentials. The geometric Berry phase and its curvature play a prominen...
Recent results on the semiclassical dynamics of an electron in a solid are explained using technique...
Quasicrystals, discovered by Dan Shechtman in 1982, provide unique materials with long-range aperiod...
In the tight-binding description of electronic, photonic, or cold atomic dynamics in a periodic latt...
The Berry curvature (BC) - a quantity encoding the geometric properties of the electronic wavefuncti...
For pt. I see ibid., vol. 4, No. 1, 3 (1971). The rigidly moving Wannier function model for the latt...
It is generally believed that many of the properties of solid bodies could be determined theoretical...
We present a simple procedure to obtain the maximally localized Wannier function of isolated bands i...
Wave-packet dynamics is a semiclassical theory which works in the classical limit and includes quan...
Introduction Traditional solid-state physics is based on the concept of the perfect crystalline soli...
In this thesis, research starts by questioning Berry curvature dipole's role in electronic propertie...
Over the past twenty-five years, mathematical concepts associated with geometric phases have come to...
AbstractWe report a first-principles computational method to describe many-electron dynamics in crys...
This book has been written for those who study or professionally deal with solid state physics. It c...
We derive a formal expression for Wannier functions of composite bands of one-dimensional (1D) Bloch...
A magnetic field applied to a crystalline solid causes the electron states on the Fermi surface to c...
Recent results on the semiclassical dynamics of an electron in a solid are explained using technique...
Quasicrystals, discovered by Dan Shechtman in 1982, provide unique materials with long-range aperiod...
In the tight-binding description of electronic, photonic, or cold atomic dynamics in a periodic latt...
The Berry curvature (BC) - a quantity encoding the geometric properties of the electronic wavefuncti...
For pt. I see ibid., vol. 4, No. 1, 3 (1971). The rigidly moving Wannier function model for the latt...
It is generally believed that many of the properties of solid bodies could be determined theoretical...
We present a simple procedure to obtain the maximally localized Wannier function of isolated bands i...
Wave-packet dynamics is a semiclassical theory which works in the classical limit and includes quan...
Introduction Traditional solid-state physics is based on the concept of the perfect crystalline soli...
In this thesis, research starts by questioning Berry curvature dipole's role in electronic propertie...
Over the past twenty-five years, mathematical concepts associated with geometric phases have come to...
AbstractWe report a first-principles computational method to describe many-electron dynamics in crys...
This book has been written for those who study or professionally deal with solid state physics. It c...
We derive a formal expression for Wannier functions of composite bands of one-dimensional (1D) Bloch...
A magnetic field applied to a crystalline solid causes the electron states on the Fermi surface to c...
Recent results on the semiclassical dynamics of an electron in a solid are explained using technique...
Quasicrystals, discovered by Dan Shechtman in 1982, provide unique materials with long-range aperiod...
In the tight-binding description of electronic, photonic, or cold atomic dynamics in a periodic latt...