Collisionless shock in a partially ionized medium. II. Balmer emission
arXiv:1210.4296 · doi:10.1088/0004-637X/760/2/137
Abstract
Strong shocks propagating into a partially ionized medium are often associated with optical Balmer lines. This emission is due to impact excitation of neutral hydrogen by hot protons and electrons in the shocked gas. The structure of such Balmer-dominated shocks has been computed in a previous paper (Blasi et al. 2012), where the distribution function of neutral particles was derived from the appropriate Boltzmann equation including coupling with ions and electrons through charge exchange and ionization. This calculation showed how the presence of neutrals can significantly modify the shock structure through the formation of a "neutral-induced" precursor ahead of the shock. Here we follow up on our previous work and investigate the properties of the resulting Balmer emission, with the aim of using the observed radiation as a diagnostic tool for shock parameters. Our main focus is on Supernova Remnant shocks, and we find that, for typical parameters, the Hα emission typically has a three-component spectral profile, where: 1) a narrow component originates from upstream cold hydrogen atoms, 2) a broad component comes from hydrogen atoms that have undergone charge exchange with shocked protons downstream of the shock, and 3) an intermediate component is due to hydrogen atoms that have undergone charge exchange with warm protons in the neutral-induced precursor. The width of the intermediate line reflects the temperature in the precursor, while the width of the narrow one is left unaltered by the precursor. In addition, we show that the profiles of both the intermediate and broad components generally depart from a thermal distribution. Finally, we show that a significant amount of Balmer emission can be produced in the precursor region if efficient electron heating takes place.
14 pages, 16 figures. Accepted for publication in ApJ
References in corpus (6)
- A Physical Relationship Between Electron-Proton Temperature Equilibration and Mach Number in Fast Collisionless Shocks
- Measuring the cosmic ray acceleration efficiency of a supernova remnant
- Spatial Structure and Collisionless Electron Heating in Balmer-dominated Shocks
- Resolved shock structure of the Balmer-dominated filaments in Tycho's supernova remnant: Cosmic-ray precursor?
- Non-Maxwellian Proton Velocity Distributions in Nonradiative Shocks
- Broad Lyman-Alpha Emission from Supernova Remnants in Young Galaxies
Cited by in corpus (37)
- The Origin of Galactic Cosmic Rays
- The microphysics of collisionless shock waves
- The origin of galactic cosmic rays
- Electron-Ion Temperature Equilibration in Collisionless Shocks: the Supernova Remnant-Solar Wind Connection
- Three-dimensional Features of the Outer Heliosphere Due to Coupling between the Interstellar and Heliospheric Magnetic Field. V. The Bow Wave, Heliospheric Boundary Layer, Instabilities, and Magnetic Reconnection
- Kinetic Simulations of Cosmic-Ray-Modified Shocks II: Particle Spectra
- Supernova Remnants in the Local Group I: A model for the radio luminosity function and visibility times of supernova remnants
- The Origin of Galactic Cosmic Rays as Revealed by their Composition
- An Integral View of Fast Shocks around Supernova 1006
- Collisionless shocks in a partially ionized medium: III. Efficient cosmic ray acceleration
- Electron-Ion Temperature Ratio in Astrophysical Shocks
- Steep Cosmic Ray Spectra with Revised Diffusive Shock Acceleration
- Electron Heating by the Ion Cyclotron Instability in Collisionless Accretion Flows. II. Electron Heating Efficiency as a Function of Flow Conditions
- Injection to rapid diffusive shock acceleration at perpendicular shocks in partially ionized plasmas
- Magnetic field amplification by collisionless shocks in partially ionized plasmas
- Broad Balmer line emission and cosmic ray acceleration efficiency in supernova remnant shocks
- Collisionless shocks in partly ionized plasma with cosmic rays: microphysics of non-thermal components
- Recent results in cosmic ray physics and their interpretation
- Integral Field Spectroscopy of Balmer-Dominated Shocks in the Magellanic Cloud Supernova Remnant N103B
- Balmer-Dominated Shocks Exclude Hot Progenitors for Many Type Ia Supernovae
- Cosmic Ray acceleration and Balmer emission from SNR 0509-67.5
- Spatially-Resolved Spectroscopy of a Balmer-Dominated Shock in the Cygnus Loop: An Extremely Thin Cosmic-Ray Precursor?
- Balmer filaments in Tycho's supernova remnant: an interplay between cosmic-ray and broad-neutral precursors
- Spectra of accelerated particles at supernova shocks in the presence of neutral hydrogen: the case of Tycho
- The LHAASO PeVatron bright sky: what we learned
- Cosmic Ray acceleration and Balmer emission from RCW 86 (G315.4-2.3)
- Forbidden Line Emission from Type Ia Supernova Remnants Containing Balmer-Dominated Shells
- Selected Topics in Cosmic Ray Physics
- Evidence for a Dense, Inhomogeneous Circumstellar Medium in the Type Ia SNR 0519-69.0
- Polarized Balmer Line Emission from Supernova Remnant Shock Waves Efficiently Accelerating Cosmic Rays
- Radiative transfer of hydrogen lines from supernova remnant shock waves: contributions of 2s-state hydrogen atoms
- Discovery of polarized line emission in SN1006
- Using optical lines to study particle acceleration at supernova remnants
- Recent developments in cosmic ray physics
- Helium emission from Balmer-dominated shocks in Type Ia supernova remnants provides constraints to their progenitor systems
- Diagnosing Cosmic Ray Modified Shocks with H α Polarimetry
- Balmer-dominated shocks in Tycho's SNR: omnipresence of CRs