Rayleigh-Taylor Instability in a Relativistic Fireball on a Moving Computational Grid
arXiv:1302.7306 · doi:10.1088/0004-637X/775/2/87
Abstract
We numerically calculate the growth and saturation of the Rayleigh-Taylor instability caused by the deceleration of relativistic outflows with Lorentz factor Γ = 10, 30, and 100. The instability generates turbulence whose scale exhibits strong dependence on Lorentz factor, as only modes with angular size smaller than 1/Γ can grow. We develop a simple diagnostic to measure the kinetic energy in turbulent fluctuations, and calculate a ratio of turbulent kinetic energy to thermal energy of .03 in the region affected by the instability. Although our numerical calculation does not include magnetic fields, we argue that small scale turbulent dynamo amplifies magnetic fields to nearly this same fraction, giving a ratio of magnetic to thermal energy of ~ .01, to within a factor of two. The instability completely disrupts the contact discontinuity between the ejecta and the swept up circumburst medium. The reverse shock is stable, but is impacted by the Rayleigh-Taylor instability, which strengthens the reverse shock and pushes it away from the forward shock. The forward shock front is unaffected by the instability, but Rayleigh-Taylor fingers can penetrate of order 10% of the way into the energetic region behind the shock during the two-shock phase of the explosion. We calculate afterglow emission from the explosion and find the reverse shock emission peaks at a later time due to its reduced Lorentz factor and modified density and pressure at the shock front. These calculations are performed using a novel numerical technique that includes a moving computational grid. The moving grid is essential as it maintains contact discontinuities to high precision and can easily evolve flows with extremely large Lorentz factors.
ApJ Accepted
References in corpus (6)
- Is nonhelical hydromagnetic turbulence peaked at small scales?
- Magnetic energy production by turbulence in binary neutron star mergers
- Gamma-ray Burst 080319B: Evidence for Relativistic Turbulence, Not Internal Shocks
- Universality and intermittency in relativistic turbulent flows of a hot plasma
- Self-similar solutions for the interaction of relativistic ejecta with an ambient medium
- Convective Instability of a Relativistic Ejecta Decelerated by a Surrounding Medium: An Origin of Magnetic Fields in GRBs?
Cited by in corpus (56)
- The Binary Neutron Star event LIGO/VIRGO GW170817 a hundred and sixty days after merger: synchrotron emission across the electromagnetic spectrum
- Effects of the microphysical Equation of State in the mergers of magnetized Neutron Stars With Neutrino Cooling
- Hydrodynamics of core-collapse supernovae and their progenitors
- Numerical simulations of the jet dynamics and synchrotron radiation of binary neutron star merger event GW170817/GRB170817A
- The structure of hydrodynamic -ray burst jets
- Producing Magnetar Magnetic Fields in the Merger of Binary Neutron Stars
- General-relativistic resistive-magnetohydrodynamic simulations of binary neutron stars
- The fate of fallback matter around newly born compact objects
- A GRB and Broad-lined Type Ic Supernova from a Single Central Engine
- Jet Dynamics in Compact Object Mergers: GW170817 Likely had a Successful Jet
- Constraining the Outflow Structure of the Binary Neutron Star Merger Event GW170817 with Markov-Chain Monte Carlo Analysis
- A Narrow Short-Duration GRB Jet from a Wide Central Engine
- GW170817 Afterglow Reveals that Short Gamma-Ray Bursts are Neutron Star Mergers
- Shock-powered radio precursors of neutron star mergers from accelerating relativistic binary winds
- A One-Dimensional Model for Rayleigh-Taylor Instability in Supernova Remnants
- Self-similar relativistic blast waves with energy injection
- A discontinuous Galerkin method for solving the fluid and MHD equations in astrophysical simulations
- Linear Theory of the Rayleigh-Taylor Instability at a Discontinuous Surface of a Relativistic Flow
- Ultrahigh-Energy Cosmic Ray Production by Turbulence in Gamma-Ray Burst Jets and Cosmogenic Neutrinos
- The Effect of Jet-Ejecta Interaction on the Viewing Angle Dependence of Kilonova Light Curves
- Gamma-ray burst afterglow blast waves
- On the Deceleration and Spreading of Relativistic Jets I: Jet Dynamics
- Shock Corrugation by Rayleigh-Taylor Instability in GRB Afterglow Jets
- HV2112, a Thorne-Zytkow Object or a Super Asymptotic Giant Branch Star
- GRB 160625B: Evidence for a Gaussian-Shaped Jet
- Interaction of a Supernova with a Circumstellar Disk
- A "Boosted Fireball" Model for Structured Relativistic Jets
- jetsimpy: A Highly Efficient Hydrodynamic Code for Gamma-ray Burst Afterglow
- Radio sky maps of the GRB 170817A afterglow from simulations
- GAMMA: a new method for modeling relativistic hydrodynamics and non-thermal emission on a moving mesh
- Gamma rays from a reverse shock with turbulent magnetic fields in GRB 180720B
- Simulation and physical model based gamma-ray burst afterglow analysis
- Modeling kilonova afterglows: Effects of the thermal electron population and interaction with GRB outflows
- Moving-mesh radiation-hydrodynamic simulations of wind-reprocessed transients
- Off-axis synchrotron light curves from full-time-domain moving-mesh simulations of jets from massive stars
- Relativistic simulations of long-lived reverse shocks in stratified ejecta: the origin of flares in GRB afterglows
- Magnetized Reverse Shock: Density-fluctuation-induced Field Distortion, Polarization Degree Reduction, and Application to GRBs
- Numerical Investigation of Dynamical and Morphological Trends in Relativistic Jets
- Energy-conserving, Relativistic Corrections to Strong Shock Propagation
- Hydrodynamic mixing of accretion disk outflows in collapsars: implications for r-process signatures
- Using Anisotropies as a Forensic Tool for Decoding Supernova Remnants
- The effect of relativistic precession on light curves of tidal disruption events
- High-Frequency Voronoi Noise Reduced by Smoothed Mesh Motion
- An energy-conserving dynamical model of GRB afterglows from magnetized forward and reverse shocks
- Acceleration of ultra-high energy cosmic rays in the early afterglows of gamma-ray bursts: concurrence of jet's dynamics and wave-particle interactions
- Revisiting the Parameter Space of Binary Neutron Star Merger Event GW170817
- Two-Dimensional Radiation-Hydrodynamic Simulations of Luminous Red Novae
- Properties of jet and surrounding material of GW/GRB~170817A
- Proto-magnetar jets as central engines for broad-lined type Ic supernovae
- A Co-Scaling Grid for Athena++
- Constraining External Reverse Shock Physics of GRBs from ROTSE-III Limits
- Multi-Messenger Signatures of PeV-ZeV Cosmic Ray Sources
- Quantifying the impact of relativistic precession on tidal disruption event light curves
- Numerical simulations of internal shocks in spherical geometry: hydrodynamics and prompt emission
- Scaling of Small-Scale Dynamo Properties in the Rayleigh-Taylor Instability
- Radiation-mediated shocks in gamma-ray bursts: spectral evolution