The process of photon-photon scattering in vacuum is investigated analytically in the long-wavelength limit within the framework of the Euler-Heisenberg Lagrangian. In order to solve the nonlinear partial differential equations (PDEs) obtained from this Lagrangian use is made of the hodograph transformation. This transformation makes it possible to turn a system of quasilinear PDEs into a system of linear PDEs. Exact solutions of the equations describing the nonlinear interaction of electromagnetic waves in vacuum in a one-dimensional configuration are obtained and analyzed
In the present thesis we study light-light scattering, which is a nonlinear effect occurring in quan...
The focus of these lectures is on the quantum vacuum subjected to classical electromagnetic fields. ...
Light and Vacuum presents a synthesis of selected fundamental topics of electromagnetic wave theory ...
In this article we use an electromagnetic Lagrangian constructed so as to include dispersive effects...
The interaction of two counterpropagating electromagnetic waves in a vacuum is analyzed within the f...
The hodograph transformation is generally used in order to associate a system of linear partial diff...
Using the quadratic expansion in the photon fields of Euler–Heisenberg (EH) non-linear electrodynami...
Some of the basic notions of nonlinear optics are summarized and then applied to the case of the Dir...
We consider the Heisenberg-Euler action for an electromagnetic field in vacuum, which includes quant...
In the limit of extremely intense electromagnetic fields the Maxwell equations are modified due to t...
Waves are a phenomenon that can be found virtually everywhere in nature. A first description of wave...
We consider nonlinear interactions between a relativistically strong laser beam and a plasma in the ...
We develop a method for computing the Bogoliubov transformation experienced by a confined quantum sc...
We show that QED nonlinear effects imply a phase correction to the linear evolution of electromagnet...
We investigate nonlinear electromagnetic waves in a system which consists of an intense, cold-fluid ...
In the present thesis we study light-light scattering, which is a nonlinear effect occurring in quan...
The focus of these lectures is on the quantum vacuum subjected to classical electromagnetic fields. ...
Light and Vacuum presents a synthesis of selected fundamental topics of electromagnetic wave theory ...
In this article we use an electromagnetic Lagrangian constructed so as to include dispersive effects...
The interaction of two counterpropagating electromagnetic waves in a vacuum is analyzed within the f...
The hodograph transformation is generally used in order to associate a system of linear partial diff...
Using the quadratic expansion in the photon fields of Euler–Heisenberg (EH) non-linear electrodynami...
Some of the basic notions of nonlinear optics are summarized and then applied to the case of the Dir...
We consider the Heisenberg-Euler action for an electromagnetic field in vacuum, which includes quant...
In the limit of extremely intense electromagnetic fields the Maxwell equations are modified due to t...
Waves are a phenomenon that can be found virtually everywhere in nature. A first description of wave...
We consider nonlinear interactions between a relativistically strong laser beam and a plasma in the ...
We develop a method for computing the Bogoliubov transformation experienced by a confined quantum sc...
We show that QED nonlinear effects imply a phase correction to the linear evolution of electromagnet...
We investigate nonlinear electromagnetic waves in a system which consists of an intense, cold-fluid ...
In the present thesis we study light-light scattering, which is a nonlinear effect occurring in quan...
The focus of these lectures is on the quantum vacuum subjected to classical electromagnetic fields. ...
Light and Vacuum presents a synthesis of selected fundamental topics of electromagnetic wave theory ...