This thesis treats of nonlinear behaviors in two different types of bidimensional systems: semiconductor heterostructures as well as a monolayer material, graphene. It consists into two main parts: the study Wannier-Stark quantification in electrically biased quantum well superlattices, and the modelling of new effects for electromagnetic wave generation in the Terahertz range. In quantum well superlattices under an external voltage, the electric field induces bidimensional confinement of the charge carriers, this effect is known as Wannier-Stark quantification. We examine two interesting consequences of this confinement: the strong photocurrent nonlinearities induced when the superlattice is placed between thick tunnel barriers, and the po...
We use an exact solution of the relaxation-time Boltzmann equation in a uniform ac electric field to...
We present perturbative analytical results of the Landau level quasienergy spectrum, autocorrelation...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...
Cette thèse traite de comportements non-linéaires dans deux types de systèmes bidimensionnels différ...
This thesis treats theoretically the current oscillations, and the subsequent THz emission in biased...
Reducing the dimensionality of a material from 3D to 2D introduces new quantum effects that can be e...
The investigation of photoelectric phenomena in the terahertz frequency range is a powerful tool to ...
Emission and utilization of terahertz range electromagnetic radiation is an active area of research...
Historically, the THz domain of the electromagnetic spectrum has been difficult to access. During th...
Historically, the THz domain of the electromagnetic spectrum has been difficult to access. During th...
The investigation of photo induced electric currents in the terahertz frequency range is a vastly ef...
International audienceGraphene has been proposed as a particularly attractive material for the achie...
17 pages, 3 figuresNonlinear couplings between photons and electrons in new materials give rise to a...
In semiconductor superlattices, the carrier band structure can be tailored by the proper choice of t...
Charge-carriers propagating in superlattices exhibit the related phenomena known as negative differe...
We use an exact solution of the relaxation-time Boltzmann equation in a uniform ac electric field to...
We present perturbative analytical results of the Landau level quasienergy spectrum, autocorrelation...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...
Cette thèse traite de comportements non-linéaires dans deux types de systèmes bidimensionnels différ...
This thesis treats theoretically the current oscillations, and the subsequent THz emission in biased...
Reducing the dimensionality of a material from 3D to 2D introduces new quantum effects that can be e...
The investigation of photoelectric phenomena in the terahertz frequency range is a powerful tool to ...
Emission and utilization of terahertz range electromagnetic radiation is an active area of research...
Historically, the THz domain of the electromagnetic spectrum has been difficult to access. During th...
Historically, the THz domain of the electromagnetic spectrum has been difficult to access. During th...
The investigation of photo induced electric currents in the terahertz frequency range is a vastly ef...
International audienceGraphene has been proposed as a particularly attractive material for the achie...
17 pages, 3 figuresNonlinear couplings between photons and electrons in new materials give rise to a...
In semiconductor superlattices, the carrier band structure can be tailored by the proper choice of t...
Charge-carriers propagating in superlattices exhibit the related phenomena known as negative differe...
We use an exact solution of the relaxation-time Boltzmann equation in a uniform ac electric field to...
We present perturbative analytical results of the Landau level quasienergy spectrum, autocorrelation...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...