Dynamics of a relativistic jet through magnetized media
arXiv:2210.15698 · doi:10.1093/mnras/stad023
Abstract
The merger of two neutron stars (NSs) produces the emission of gravitational waves, the formation of a compact object surrounded by a dense and magnetized environment, and the launching of a collimated and relativistic jet, which will eventually produce a short gamma-ray burst (SGRB). The interaction of the jet with the environment has been shown to play a major role in shaping the structure of the outflow that eventually powers the gamma-ray emission. In this paper, we present a set of 2.5 dimensional RMHD simulations that follow the evolution of a relativistic non-magnetized jet through a medium with different magnetization levels, as produced after the merger of two NSs. We find that the predominant consequence of a magnetized ambient medium is that of suppressing instabilities within the jet, and preventing the formation of a series of collimation shocks. One implication of this is that internal shocks lose efficiency, causing bursts with low-luminosity prompt emission. On the other hand, the jet-head velocity and the induced magnetization within the jet are fairly independent from the magnetization of the ambient medium. Future numerical studies with a larger domain are necessary to obtain light curves and spectra in order to better understand the role of magnetized media.
7 pages, 5 figures, 1 table. Submitted to MNRAS
References in corpus (18)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Multi-messenger Observations of a Binary Neutron Star Merger
- An Ordinary Short Gamma-Ray Burst with Extraordinary Implications: Fermi-GBM Detection of GRB 170817A
- The X-ray counterpart to the gravitational wave event GW 170817
- A Radio Counterpart to a Neutron Star Merger
- The Electromagnetic Counterpart of the Binary Neutron Star Merger LIGO/VIRGO GW170817. V. Rising X-ray Emission from an Off-Axis Jet
- Jet collimation in the ejecta of double neutron star merger: new canonical picture of short gamma-ray bursts
- Short versus Long Gamma-Ray Bursts: spectra, energetics, and luminosities
- Very high efficiency photospheric emission in long duration gamma-ray bursts
- Spectral and timing properties of a dissipative GRB photosphere
- Necessary Conditions for Short Gamma-Ray Burst Production in Binary Neutron Star Mergers
- Relativistic Jets and Long-Duration Gamma-ray Bursts from the Birth of Magnetars
- Bulk Lorentz factors of Gamma-Ray Bursts
- The Properties of Short gamma-ray burst Jets Triggered by neutron star mergers
- The structure of weakly-magnetized -ray burst jets
- The role of jet-cocoon mixing, magnetization and shock breakout in neutrino and cosmic-ray emission from short GRBs
- Three-dimensional numerical simulations of structured GRB jets
- Two steps forward and one step sideways: the propagation of relativistic jets in realistic binary neutron star merger ejecta
Cited by in corpus (3)
- Jet-environment interplay in magnetized binary neutron star mergers
- Magnetic dissipation in short gamma-ray burst jets. I. Resistive relativistic MHD evolution in a model environment
- Approaching ballistic motion in 3D simulations of gamma-ray burst jets in realistic binary neutron star merger environments