High-energy emission from non-relativistic radiative shocks: application to gamma-ray novae
arXiv:1611.04532 · doi:10.3847/1538-4357/aa9c4a
Abstract
Multiwavelength radiation from relativistic particles accelerated at shocks in novae and other astrophysical sources carries a wealth of information about the outflow properties and the microphysical processes at work near the shocks. The observation of GeV gamma-rays from novae by Fermi/LAT demonstrates that the shocks in these systems can accelerate particles to energies of at least GeV. The low-energy extension of the same non-thermal particle distribution inevitably gives rise to emission extending into the X-ray band. Above keV this radiation can escape the system without significant absorption/attenuation, and can potentially be detected by NuSTAR. We present theoretical models for hard X-ray and gamma-ray emission from radiative shocks in both leptonic and hadronic scenarios, accounting for the rapid evolution of the downstream properties due to the fast cooling of thermal plasma. Due to strong Coulomb cooling of the mildly relativistic electrons nominally responsible for producing hard X-ray emission, only a fraction of of the gamma-ray luminosity is radiated in the NuSTAR band; nevertheless, this emission could be detectable simultaneous with the LAT emission in bright gamma-ray novae with a ks exposure. Our work demonstrates how combined hard X-ray and gamma-ray observations can be used to constrain properties of the nova outflow (velocity, density and mass outflow rate) and particle acceleration at the shock. A very low X-ray to gamma-ray luminosity ratio () would disfavor leptonic models for the gamma-ray emission. Our model can also be applied to other astrophysical environments with radiative shocks, including Type IIn supernovae and colliding winds in massive star binaries.
17 pages, 12 figures, submitted to ApJ
References in corpus (18)
- Physical Properties of Wolf-Rayet Stars
- Parameterization of Gamma, e^+/- and Neutrino Spectra Produced by p-p Interaction in Astronomical Environment
- Simultaneous Acceleration of Protons and Electrons at Nonrelativistic Quasiparallel Collisionless Shocks
- Fermi Establishes Classical Novae as a Distinct Class of Gamma-Ray Sources
- Radio, X-ray, and gamma-ray Emission Models of the Colliding Winds Binary WR 140
- Dynamical Feedback of Self-generated Magnetic Fields in Cosmic Ray Modified Shocks
- Non-thermal emission processes in massive binaries
- Gamma-ray novae as probes of relativistic particle acceleration at non-relativistic shocks
- Shocks in nova outflows. I. Thermal emission
- A Nova Outburst Powered by Shocks
- Evidence for nonlinear diffusive shock acceleration of cosmic-rays in the 2006 outburst of the recurrent nova RS Ophiuchi
- Fermi LAT Gamma-ray Detections of Classical Novae V1369 Centauri 2013 and V5668 Sagittarii 2015
- The first full orbit of Eta Carinae seen by Fermi
- Particle acceleration and wave excitation in quasi-parallel high-Mach-number collisionless shocks: Particle-in-cell simulation
- Early evolution of the extraordinary Nova Del 2013 (V339 Del)
- Suzaku Monitoring of Hard X-ray Emission from Eta Carinae over a Single Binary Orbital Cycle
- The hybrid, coronal lines nova V5588 Sgr (2011 N.2) and its six repeating secondary maxima
- INTEGRAL-ISGRI observations of the CygOB2 region: earching for hard X-ray point sources in a region containing several non-thermal emitting massive stars
Cited by in corpus (30)
- A concordance picture of FRB 121102 as a flaring magnetar embedded in a magnetized ion-electron wind nebula
- New Insights into Classical Novae
- A Nova Outburst Powered by Shocks
- Observations of Galactic and Extragalactic Novae
- Gamma-ray Thermalization and Leakage from Millisecond Magnetar Nebulae: Towards a Self-Consistent Model for Superluminous Supernovae
- High-Energy Neutrinos and Gamma-Rays from Non-Relativistic Shock-Powered Transients
- Radiative shocks create environments for dust formation in novae
- Fermi-LAT Gamma-ray Detection of the Recurrent Nova RS Ophiuchi during its 2021 Outburst
- Gamma-ray emission from internal shocks in novae
- A Detailed Observational Analysis of V1324 Sco, the Most Gamma-Ray Luminous Classical Nova to Date
- NuSTAR Detection of X-rays Concurrent with Gamma Rays in the Nova V5855 Sgr
- Evidence for multiple shocks from the -ray emission of RS Ophiuchi
- The first nova eruption in a novalike variable: YZ Ret as seen in X-rays and gamma-rays
- X-ray Spectroscopy of the gamma-ray Brightest Nova V906 Car (ASASSN-18fv)
- Chandra High Energy Transmission Gratings Spectra of V3890 Sgr
- The multi-wavelength view of shocks in the fastest nova V1674 Her
- Internal Shocks from Variable Outflows in Classical Novae
- Particle acceleration and magnetic field amplification in massive young stellar object jets
- Shocks in the outflow of the RS Oph 2021 eruption observed with X-ray gratings
- Gamma-ray and X-ray constraints on non-thermal processes in Carinae
- Search for sub-TeV Neutrino Emission from Novae with IceCube-DeepCore
- Early multiwavelength analysis of the recurrent nova V745 Sco
- -ray Emission from Classical Nova V392 Per: Measurements from Fermi and HAWC
- High energy neutrinos from fast winds in Novae
- Flows and Shocks: Some Recent Developments in Symbiotic Star and Nova Research
- Classical Novae in the ASKAP Pilot Surveys
- For how long are particles accelerated in shells of recurrent Novae ?
- Evidence for GeV Cosmic Rays from White Dwarfs in the Local Cosmic Ray Spectra and in the Gamma-ray Emissivity of the Inner Galaxy
- Evidence of the gamma-ray counterpart from nova FM Cir with Fermi-LAT
- Radio Nebulæ from Hyper-Accreting X-ray Binaries as Common Envelope Precursors and Persistent Counterparts of Fast Radio Bursts