We study classical transport properties of a two- dimensional electron gas subject to a spatially periodic magnetic field and to a time-dependent (ac) electric field. We investigate the case of a strong one-dimensional magnetic modulation and show how the chaotic electronic motion affects the conductivity of the sample. The dependence of the longitudinal conductivity on the amplitude of the ac field clearly reflects the arising of coupled chaotic phase-space areas as well as features of anomalous diffusion of the charge carriers
We develop a semiclassical balance equation model for transport through a single miniband of a semi...
Magnetoresistance measurements and theoretical calculations for two-dimensional electron systems und...
This manuscript contains 13 Pages and 19 figuresInternational audienceThe ExB electron drift instabi...
We study classical transport properties of a two- dimensional electron gas subject to a spatially p...
We study the effects of dissipation and noise on chaotic electron dynamics, which accompany charge t...
We study the effects of dissipation on electron transport in a semiconductor superlattice with an ap...
In this thesis, we investigate the collective electron dynamics in single and coupled superlattice s...
When quantized, traces of classically chaotic single-particle systems include eigenvalue statistics ...
Recent studies of transport through ballistic quantum dot resonators have revealed a complex array o...
We investigate the low-field magnetotransport properties of a two-dimensional electron gas with a st...
International audienceThe influence of magnetic impurities on the transport properties of graphene i...
We study magnetotransport in lateral two- dimensional superlattices with periods on the order of 10...
We consider the motion of ballistic electrons within a superlattice miniband under the infl...
We explore a new regime of hot carrier dynamics, in which electrons in a superlattice miniband exhib...
We analyze theoretically the dynamical transport through a weakly coupled semiconductor superlattice...
We develop a semiclassical balance equation model for transport through a single miniband of a semi...
Magnetoresistance measurements and theoretical calculations for two-dimensional electron systems und...
This manuscript contains 13 Pages and 19 figuresInternational audienceThe ExB electron drift instabi...
We study classical transport properties of a two- dimensional electron gas subject to a spatially p...
We study the effects of dissipation and noise on chaotic electron dynamics, which accompany charge t...
We study the effects of dissipation on electron transport in a semiconductor superlattice with an ap...
In this thesis, we investigate the collective electron dynamics in single and coupled superlattice s...
When quantized, traces of classically chaotic single-particle systems include eigenvalue statistics ...
Recent studies of transport through ballistic quantum dot resonators have revealed a complex array o...
We investigate the low-field magnetotransport properties of a two-dimensional electron gas with a st...
International audienceThe influence of magnetic impurities on the transport properties of graphene i...
We study magnetotransport in lateral two- dimensional superlattices with periods on the order of 10...
We consider the motion of ballistic electrons within a superlattice miniband under the infl...
We explore a new regime of hot carrier dynamics, in which electrons in a superlattice miniband exhib...
We analyze theoretically the dynamical transport through a weakly coupled semiconductor superlattice...
We develop a semiclassical balance equation model for transport through a single miniband of a semi...
Magnetoresistance measurements and theoretical calculations for two-dimensional electron systems und...
This manuscript contains 13 Pages and 19 figuresInternational audienceThe ExB electron drift instabi...