We investigate the production of the gamma-ray spectrum of a Poynting-flux dominated GRB outflow. The very high magnetic field strengths (super-equipartition) in such a flow lead to very efficient synchrotron emission. In contrast with internal shocks, dissipation of magnetic energy by reconnection is gradual and does not produce the spectrum of cooling electrons associated with shock acceleration. We show that a spectrum with a break in the BATSE energy range is produced, instead, if the magnetic dissipation heats a small (~10-4) population of electrons
Gamma-ray bursts (GRBs) are the most energetic electromagnetic sources in the Universe, releasing 10...
Considered here is the acceleration and heating of relativistic outflow by local magnetic energy dis...
I explore the observational appearance of the photosphere of an ultrarelativistic flow with interna...
We investigate the production of the gamma-ray spectrum of a Poynting-flux dominated GRB outflow. T...
We study magnetically powered relativistic outflows in which a part of the magnetic energy is dissi...
We investigate the effects of magnetic energy release by local magnetic dissipation processes in Poy...
We investigate the effects of magnetic energy release by local magnetic dissipation processes in Po...
We consider the conditions within Gamma-Ray Burst (GRB) emission region that is Poynting flux domina...
We consider possible geometries of magnetic fields in GRB outflows, and their evolution with distanc...
I calculate the emission expected from a Poynting-flux-dominated gamma-ray burst (GRB) flow in which...
The idea that cosmic relativistic jets are magnetically driven Poynting-dominated flows has many att...
We report on the first steps in 3D simulation of magnetic field dissipation in gamma-ray burst (GRB)...
In the internal shock model for gamma-ray bursts (GRBs), the synchrotron spectrum from the fast cool...
We summarize latest PIC simulation results on the radiation from Poynting jets and strongly magnetiz...
Modelling of many gamma-ray burst prompt emission spectra sometimes requires a (quasi) thermal spect...
Gamma-ray bursts (GRBs) are the most energetic electromagnetic sources in the Universe, releasing 10...
Considered here is the acceleration and heating of relativistic outflow by local magnetic energy dis...
I explore the observational appearance of the photosphere of an ultrarelativistic flow with interna...
We investigate the production of the gamma-ray spectrum of a Poynting-flux dominated GRB outflow. T...
We study magnetically powered relativistic outflows in which a part of the magnetic energy is dissi...
We investigate the effects of magnetic energy release by local magnetic dissipation processes in Poy...
We investigate the effects of magnetic energy release by local magnetic dissipation processes in Po...
We consider the conditions within Gamma-Ray Burst (GRB) emission region that is Poynting flux domina...
We consider possible geometries of magnetic fields in GRB outflows, and their evolution with distanc...
I calculate the emission expected from a Poynting-flux-dominated gamma-ray burst (GRB) flow in which...
The idea that cosmic relativistic jets are magnetically driven Poynting-dominated flows has many att...
We report on the first steps in 3D simulation of magnetic field dissipation in gamma-ray burst (GRB)...
In the internal shock model for gamma-ray bursts (GRBs), the synchrotron spectrum from the fast cool...
We summarize latest PIC simulation results on the radiation from Poynting jets and strongly magnetiz...
Modelling of many gamma-ray burst prompt emission spectra sometimes requires a (quasi) thermal spect...
Gamma-ray bursts (GRBs) are the most energetic electromagnetic sources in the Universe, releasing 10...
Considered here is the acceleration and heating of relativistic outflow by local magnetic energy dis...
I explore the observational appearance of the photosphere of an ultrarelativistic flow with interna...