Thermal Electrons in Mildly-relativistic Synchrotron Blast-waves
arXiv:2111.00012 · doi:10.3847/2041-8213/ac3d97
Abstract
Numerical models of collisionless shocks robustly predict an electron distribution comprised of both thermal and non-thermal electrons. Here, we explore in detail the effect of thermal electrons on the emergent synchrotron emission from sub-relativistic shocks. We present a complete `thermal + non-thermal' synchrotron model and derive properties of the resulting spectrum and light-curves. Using these results we delineate the relative importance of thermal and non-thermal electrons for sub-relativistic shock-powered synchrotron transients. We find that thermal electrons are naturally expected to contribute significantly to the peak emission if the shock velocity is , but would be mostly undetectable in non-relativistic shocks. This helps explain the dichotomy between typical radio supernovae and the emerging class of `AT2018cow-like' events. The signpost of thermal electron synchrotron emission is a steep optically-thin spectral index and a optically-thick spectrum. These spectral features are also predicted to correlate with a steep post-peak light-curve decline rate, broadly consistent with observed AT2018cow-like events. We expect that thermal electrons may be observable in other contexts where mildly-relativistic shocks are present, and briefly estimate this effect for gamma-ray burst afterglows and binary neutron star mergers. Our model can be used to fit spectra and light-curves of events and accounts for both thermal and non-thermal electron populations with no additional physical degrees of freedom.
15 pages, 3 figures, 1 table; ApJL submitted; See https://github.com/bmargalit/thermal-synchrotron for accompanying code; Comments welcome!
References in corpus (8)
- Particle acceleration in relativistic collisionless shocks: Fermi process at last?
- Simultaneous Acceleration of Protons and Electrons at Nonrelativistic Quasiparallel Collisionless Shocks
- The Koala: A Fast Blue Optical Transient with Luminous Radio Emission from a Starburst Dwarf Galaxy at
- Radio Constraints on Long-Lived Magnetar Remnants in Short Gamma-Ray Bursts
- The afterglow of a relativistic shock breakout and low-luminosity GRBs
- Cosmic ray protons and electrons from supernova remnants
- Shock within a shock: revisiting the radio flares of NS merger ejecta and GRB-supernovae
- Non-thermal particle acceleration at highly oblique non-relativistic shocks
Cited by in corpus (25)
- The Radio to GeV Afterglow of GRB 221009A
- Luminous Millimeter, Radio, and X-ray Emission from ZTF20acigmel (AT2020xnd)
- Redback: A Bayesian inference software package for electromagnetic transients
- Shocked jets in CCSNe can power the zoo of fast blue optical transients
- Optical to X-ray Signatures of Dense Circumstellar Interaction in Core-Collapse Supernovae
- On the diversity of magnetar-driven kilonovae
- Minutes-duration Optical Flares with Supernova Luminosities
- Electromagnetic counterparts of binary neutron star mergers leading to a strongly magnetized long-lived remnant neutron star
- Modeling kilonova afterglows: Effects of the thermal electron population and interaction with GRB outflows
- Particle Acceleration in Mildly Relativistic Outflows of Fast Energetic Transient Sources
- Wind-Reprocessed Transients from Stellar-mass Black Hole Tidal Disruption Events
- Joint ALMA/X-ray monitoring of the radio-quiet type 1 AGN IC 4329A
- Neutrino Emission from Luminous Fast Blue Optical Transients
- Testing afterglow models of FRB 200428 with early post-burst observations of SGR 1935+2154
- Synthetic radio images of structured GRB and kilonova afterglows
- Millimeter emission from supermassive black hole coronae
- A Population Study on the Radio Emission of Fast Blue Optical Transients
- Magnetic Field Amplification and Particle Acceleration in Weakly Magnetized Trans-relativistic Electron-ion Shocks
- X-ray constraint for the unseen companion of V723 Mon: it is a mass-gap black hole rather than binary neutron stars
- The X-ray and Radio Loud Fast Blue Optical Transient AT2020mrf: Implications for an Emerging Class of Engine-Driven Massive Star Explosions
- Numerical Modeling of Relativistic Effects in Synchrotron-Emitting Shocks
- Synchrotron break frequencies of mildly-to-highly relativistic outflows observed off-axis
- Electron-Ion Temperature Ratio in Transrelativistic Unmagnetized Shock Waves
- The radio afterglow of the ultra-long GRB 220627A
- Luminous Fast Blue Optical Transients and Type Ibn/Icn SNe from Wolf-Rayet/Black Hole Mergers