Electron-Ion Temperature Equilibration in Collisionless Shocks: the Supernova Remnant-Solar Wind Connection
arXiv:1305.6617 · doi:10.1007/s11214-013-9999-0
Abstract
Collisionless shocks are loosely defined as shocks where the transition between pre-and post-shock states happens on a length scale much shorter than the collisional mean free path. In the absence of collision to enforce thermal equilibrium post-shock, electrons and ions need not have the same temperatures. While the acceleration of electrons for injection into shock acceleration processes to produce cosmic rays has received considerable attention, the related problem of the shock heating of quasi-thermal electrons has been relatively neglected. In this paper we review that state of our knowledge of electron heating in astrophysical shocks, mainly associated with supernova remnants (SNRs), shocks in the solar wind associated with the terrestrial and Saturnian bowshocks, and galaxy cluster shocks. The solar wind and SNR samples indicate that the ratio of electron temperature to ion temperature declines with increasing shock speed or Alfvenic Mach number. We discuss the extent to which such behavior can be understood via cosmic ray-generated waves in a shock precursor, which then subsequently damp by heating electrons. Finally, we speculate that a similar mechanism may be at work for both solar wind and SNR shocks.
36 pages, 7 figures. accepted for publication in Space Science Reviews
References in corpus (20)
- Shocks and cold fronts in galaxy clusters
- Observations of the young supernova remnant RX J1713.7-3946 with the Fermi Large Area Telescope
- A Physical Relationship Between Electron-Proton Temperature Equilibration and Mach Number in Fast Collisionless Shocks
- A kinetic approach to cosmic ray induced streaming instability at supernova shocks
- First detection of VHE gamma-rays from SN 1006 by H.E.S.S
- Measuring the cosmic ray acceleration efficiency of a supernova remnant
- Study of Nonthermal Emission from SNR RX J1713.7-3946 with Suzaku
- Confirmation of strong magnetic field amplification and nuclear cosmic ray acceleration in SN 1006
- Spatial Structure and Collisionless Electron Heating in Balmer-dominated Shocks
- On the Origin of Asymmetries in Bilateral Supernova Remnants
- Resolved shock structure of the Balmer-dominated filaments in Tycho's supernova remnant: Cosmic-ray precursor?
- Balmer-Dominated Shocks Revisited
- A cosmic ray current driven instability in partially ionised media
- SUBARU HDS Observations of a Balmer-Dominated Shock in Tycho's Supernova Remnant
- Large parallel and perpendicular electric fields on electron spatial scales in the terrestrial bow shock
- The Heating of Thermal Electrons in Fast Collisionless Shocks: The Integral Role of Cosmic Rays
- A critical Mach number for electron injection in collisionless shocks
- The Transition Zone in Balmer-Dominated Shocks
- Mach Number Dependence of Electron Heating in High Mach Number Quasiperpendicular Shocks
- Efficient electron heating in relativistic shocks and gamma ray burst afterglow
Cited by in corpus (63)
- The Origin of Galactic Cosmic Rays
- Precursors prior to Type IIn supernova explosions are common: precursor rates, properties, and correlations
- SN 2010jl: Optical to hard X-ray observations reveal an explosion embedded in a ten solar mass cocoon
- Nature of Kinetic Scale Turbulence in the Earth's Magnetosheath
- Collisionless Reconnection in Magnetohydrodynamic and Kinetic Turbulence
- Observations of Magnetic Reconnection in the Transition Region of Quasi-Parallel Shocks
- On the electron-ion temperature ratio established by collisionless shocks
- Collisionless shock heating of heavy ions in SN 1987A
- Evolutionary Models for 43 Galactic Supernova Remnants with Distances and X-ray Spectra
- A Python Calculator for Supernova Remnant Evolution
- Electron-Ion Temperature Ratio in Astrophysical Shocks
- Electron Heating in Low Mach Number Perpendicular shocks. I. Heating Mechanism
- Energetics and Birth Rates of Supernova Remnants in the Large Magellanic Cloud
- Electron Heating in Low Mach Number Perpendicular shocks. II. Dependence on the Pre-Shock Conditions
- Diffuse γ-ray emission from self-confined cosmic rays around Galactic sources
- Inside the core of a young massive star cluster: 3D MHD simulations
- The Dynamics of a High Mach Number Quasi-Perpendicular Shock: MMS Observations
- Dynamics of millicharged dark matter in supernova remnants
- Non-relativistic perpendicular shocks modeling young supernova remnants: nonstationary dynamics and particle acceleration at forward and reverse shocks
- Thermal Emission and Radioactive Lines, but No Pulsar, in the Broadband X-Ray Spectrum of Supernova 1987A
- Emission Measures and Emission-measure-weighted Temperatures of Shocked ISM and Ejecta in Supernova Remnants
- Electron Heating in Perpendicular Low-Beta Shocks
- Shocked Interstellar clouds and dust grain destruction in the LMC Supernova Remnant N132D
- Evolutionary Models for 15 Galactic Supernova Remnants with New Distances
- Kinetic simulation of nonrelativistic perpendicular shocks of young supernova remnants. IV. Electron heating
- Integral Field Spectroscopy of Balmer-Dominated Shocks in the Magellanic Cloud Supernova Remnant N103B
- Spatially Resolved RGS Analysis of Kepler's Supernova Remnant
- Carbon, Helium and Proton Kinetic Temperatures in a Cygnus Loop Shock Wave
- Spatially-Resolved Spectroscopy of a Balmer-Dominated Shock in the Cygnus Loop: An Extremely Thin Cosmic-Ray Precursor?
- Non-linear diffusive shock acceleration: A recipe for injection of electrons
- Non-equilibrium ionization effects on solar EUV and X-ray imaging observations
- Spatially Resolved Chandra Spectroscopy of the Large Magellanic Cloud Supernova Remnant N132D
- Competitive X-ray and Optical Cooling in the Collisionless Shocks of WR 140
- Testing the cooling flow model in the intermediate polar EX Hydrae
- 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
- Cosmic Ray acceleration and Balmer emission from RCW 86 (G315.4-2.3)
- Constraining Low-luminosity Gamma-Ray Bursts as Ultra-high-energy Cosmic Ray Sources Using GRB 060218 as a Proxy
- Electron acceleration at supernova remnants
- Collisional behaviors of astrophysical collisionless plasmas
- Forbidden Line Emission from Type Ia Supernova Remnants Containing Balmer-Dominated Shells
- High-power laser experiment on developing supercritical shock propagating in homogeneously magnetized plasma of ambient gas origin
- Selected Topics in Cosmic Ray Physics
- Electron heating in high Mach number collisionless shocks
- Direct Multipoint Observations Capturing the Reformation of a Supercritical Fast Magnetosonic Shock
- Simulating TeV gamma-ray morphologies of shell-type supernova remnants
- Tearing instability in Alfvén and kinetic-Alfvén turbulence
- Two-temperature Magnetohydrodynamic simulations for sub-relativistic AGN jets:Dependence on the fraction of the electron heating
- Supernova of 1006 (G327.6+14.6)
- Evidence for thermal X-ray emission from the synchrotron dominated shocks in Tycho's supernova remnant
- Evidence for a Dense, Inhomogeneous Circumstellar Medium in the Type Ia SNR 0519-69.0
- Plasma heating and particle acceleration in collisionless shocks through astrophysical observations
- Radiative transfer of hydrogen lines from supernova remnant shock waves: contributions of 2s-state hydrogen atoms
- Unbiased Spectroscopic Study of the Cygnus Loop with LAMOST. I. Optical Properties of Emission Lines and the Global Spectrum
- Electron Energization in Quasi-Parallel Shocks: Test-Particle-Electrons in a Proton Driven Turbulence
- Line profile of nuclear de-excitation gamma-ray emission from very hot plasma
- Interplay between Physics and Geometry in Balmer filaments: the Case of SN 1006
- A multi-ion non-equilibrium solver for ionised astrophysical plasmas with arbitrary elemental abundances
- Electron-Ion Temperature Ratio in Transrelativistic Unmagnetized Shock Waves
- Very High Energy Gamma Rays from Ultra Fast Outflows
- Energy partition in collisionless counterstreaming plasmas
- Non-linear Diffusive Shock Acceleration of Cosmic Rays -- Quasi-thermal and Non-thermal Particle Distributions
- The structure of cluster merger shocks: turbulent width and the electron heating timescale