Using a mean-field approximation, we have developed a systematic treatment of collective electronic modes in a semiconductor superlattice (SL) in the presence of strong electric and magnetic fields parallel to the SL axis. The spectrum of collective modes with zero wavevector along the SL axis is shown to consist of a principle magnetoplasmon mode and an infinite set of Bernstein-like modes. For non-zero wavevector along the SL axis, in addition to the cyclotron modes, extra collective modes are found at the frequencies $\vert N\omega_c\pm M\omega_s\vert$, which we call cyclotron-Stark modes ($\omega_c$ and $\omega_s$ are respectively the cyclotron and Stark frequencies, N and M are integer numbers). The frequencies of the modes propagating...
We develop a semiclassical balance equation model for transport through a single miniband of a semi...
International audienceIn 1970, Esaki and Tsu invented the concept of semiconductor superlattices for...
This thesis examines the quantum dynamics of electrons in periodic semiconductor superlattices in th...
The application of an external electric field parallel to the growth axis of a superlattice quantize...
The application of an external electric field parallel to the growth axis of a superlattice quantize...
The oscillator strengths of the optical transitions in a semiconductor superlattice under an electri...
The oscillator strengths of the optical transitions in a semiconductor superlattice under an electri...
The oscillator strengths of the optical transitions in a semiconductor superlattice under an electri...
The oscillator strengths of the optical transitions in a semiconductor superlattice under an electri...
In this thesis, we investigate the collective electron dynamics in single and coupled superlattice s...
We consider the motion of ballistic electrons in a miniband of a semiconductor superlattice...
We consider the motion of ballistic electrons in a miniband of a semiconductor superlattice...
Semiconductor superlattices are artificial crystals with a periodicity much larger than lattice cons...
Semiconductor superlattices are artificial crystals with a periodicity much larger than lattice cons...
We develop a semiclassical balance equation model for transport through a single miniband of a semi...
We develop a semiclassical balance equation model for transport through a single miniband of a semi...
International audienceIn 1970, Esaki and Tsu invented the concept of semiconductor superlattices for...
This thesis examines the quantum dynamics of electrons in periodic semiconductor superlattices in th...
The application of an external electric field parallel to the growth axis of a superlattice quantize...
The application of an external electric field parallel to the growth axis of a superlattice quantize...
The oscillator strengths of the optical transitions in a semiconductor superlattice under an electri...
The oscillator strengths of the optical transitions in a semiconductor superlattice under an electri...
The oscillator strengths of the optical transitions in a semiconductor superlattice under an electri...
The oscillator strengths of the optical transitions in a semiconductor superlattice under an electri...
In this thesis, we investigate the collective electron dynamics in single and coupled superlattice s...
We consider the motion of ballistic electrons in a miniband of a semiconductor superlattice...
We consider the motion of ballistic electrons in a miniband of a semiconductor superlattice...
Semiconductor superlattices are artificial crystals with a periodicity much larger than lattice cons...
Semiconductor superlattices are artificial crystals with a periodicity much larger than lattice cons...
We develop a semiclassical balance equation model for transport through a single miniband of a semi...
We develop a semiclassical balance equation model for transport through a single miniband of a semi...
International audienceIn 1970, Esaki and Tsu invented the concept of semiconductor superlattices for...
This thesis examines the quantum dynamics of electrons in periodic semiconductor superlattices in th...