Cooperative super-radiant emission from a highly relativistic multi-particle source is modeled and solved for the simple case of two particles. An existing model of a single relativistic two-level particle is used to construct a Hamiltonian describing relativistic velocity dependent multi-particle super-radiance. The standard diagrammatic framework is applied to the calculation of time evolution and density operators from this Hamiltonian, demonstrating during the process a departure from standard results and calculation methods. In particular, the so-called vertical photon result of the literature is shown to be modified by the relativistic Lorentz factor of the sample; additionally, a set of coupled differential equations describing certa...
9 pages, 6 figures, proceedings of the VII Microquasar Workshop: Microquasars and Beyond, September ...
The field-theoretic description of multiparticle production processes is cast in a form analogous to...
In many radiation hydrodynamics problems of astrophysical interest, the fluid moves at extremely hig...
In the quantum phenomenon of superradiance (SR) a population of inverted particles evolves, through ...
Context. Modelling the emission properties of compact high energy sources such as X-ray binaries, AG...
We recently derived, using diagrammatic methods, the leading-order hard photon emission rate in ultr...
International audiencePowerful astrophysical sources produce non-thermal spectra of very-high-energy...
In this thesis I describe the development of a three-dimensional radiative transfer model that is ca...
The evolution of a completely excited system of N two-level atoms, distributed over a large region a...
This work presents new kinds of numerical schemes adapted to the transport and the acceleration of r...
Abstract In this paper, we provide a simple and modern discussion of rotational super-radiance based...
The classical modeling of radiation by accelerated charged particles in pulsars predicts a cutoff in...
In this thesis I describe the development of a three-dimensional radiative transfer model that is ca...
Many astrophysical phenomena exhibit relativistic radiative flows. While velocities in excess of $v ...
Cooperative effects describe atomic ensembles with exchange of photonic excitations, such as dipole-...
9 pages, 6 figures, proceedings of the VII Microquasar Workshop: Microquasars and Beyond, September ...
The field-theoretic description of multiparticle production processes is cast in a form analogous to...
In many radiation hydrodynamics problems of astrophysical interest, the fluid moves at extremely hig...
In the quantum phenomenon of superradiance (SR) a population of inverted particles evolves, through ...
Context. Modelling the emission properties of compact high energy sources such as X-ray binaries, AG...
We recently derived, using diagrammatic methods, the leading-order hard photon emission rate in ultr...
International audiencePowerful astrophysical sources produce non-thermal spectra of very-high-energy...
In this thesis I describe the development of a three-dimensional radiative transfer model that is ca...
The evolution of a completely excited system of N two-level atoms, distributed over a large region a...
This work presents new kinds of numerical schemes adapted to the transport and the acceleration of r...
Abstract In this paper, we provide a simple and modern discussion of rotational super-radiance based...
The classical modeling of radiation by accelerated charged particles in pulsars predicts a cutoff in...
In this thesis I describe the development of a three-dimensional radiative transfer model that is ca...
Many astrophysical phenomena exhibit relativistic radiative flows. While velocities in excess of $v ...
Cooperative effects describe atomic ensembles with exchange of photonic excitations, such as dipole-...
9 pages, 6 figures, proceedings of the VII Microquasar Workshop: Microquasars and Beyond, September ...
The field-theoretic description of multiparticle production processes is cast in a form analogous to...
In many radiation hydrodynamics problems of astrophysical interest, the fluid moves at extremely hig...