X-Ray Synchrotron Emission from 10-100 TeV Cosmic-Ray Electrons in the Supernova Remnant SN 1006
arXiv:astro-ph/0107540 · doi:10.1086/322470
Abstract
We present the results of a joint spectral analysis of RXTE PCA, ASCA SIS, and ROSAT PSPC data of the supernova remnant SN 1006. This work represents the first attempt to model both the thermal and nonthermal X-ray emission over the entire X-ray energy band from 0.12 to 17 keV. The thermal flux is described by a nonequilibrium ionization model with an electron temperature kT = 0.6 keV, an ionization timescale n0t = 9 x 10^9 s / cm^3, and a relative elemental abundance of silicon that is 10-18 times larger than the solar abundance. The nonthermal X-ray spectrum is described by a broken power law model with low- and high-energy photon indices Gamma_1 = 2.1 and Gamma_2 = 3.0, respectively. Since the nonthermal X-ray spectrum steepens with increasing energy, the results of the present analysis corroborate previous claims that the nonthermal X-ray emission is produced by synchrotron radiation. We argue that the magnetic field strength is significantly larger than previous estimates of about 1 x 10^-5 G and arbitrarily use a value of 4 x 10^-5 G to estimate the parameters of the cosmic-ray electron, proton, and helium spectra of the remnant. The results for the ratio of the number densities of protons and electrons (R = 160 at 1 GeV), the total energy in cosmic rays (E_cr = 1 x 10^50 ergs), and the spectral index of the electrons at 1 GeV (Gamma_e = 2.14 +/- 0.12) are consistent with the hypothesis that Galactic cosmic rays are accelerated predominantly in the shocks of supernova remnants. Yet, the remnant may or may not accelerate nuclei to energies as high as the energy of the "knee," depending on the reason why the maximum energy of the electrons is only 10 TeV.
41 pages, 9 figures, accepted for publication in ApJ in September
Cited by in corpus (56)
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- The SN 1006 Remnant: Optical Proper Motions, Deep Imaging, Distance, and Brightness at Maximum
- Confirmation of strong magnetic field amplification and nuclear cosmic ray acceleration in SN 1006
- A High-Resolution Study of Nonthermal Radio and X-Ray Emission from SNR G347.3-0.5
- Inter-galactic Shock Acceleration and the Cosmic Gamma-ray Background
- The gas-to-extinction ratio and the gas distribution in the Galaxy
- Emission of SN 1006 produced by accelerated cosmic rays
- No surviving evolved companions to the progenitor of supernova SN 1006
- Numerical Modeling of Gamma Radiation from Galaxy Clusters
- Variation of cosmic ray injection across supernova shocks
- Electron Injection at High Mach Number Quasi-Perpendicular Shocks : Surfing and Drift Acceleration
- An X-ray Search for Compact Central Sources in Supernova Remnants I: SNRs G093.3+6.9, G315.4-2.3, G084.2+0.8, & G127.1+0.5
- Limits on Lorentz Violation from Synchrotron and Inverse Compton Sources
- Thermal and Non-thermal X-Rays from the LMC Super Bubble 30 Dor C
- Synchrotron and Inverse Compton Constraints on Lorentz Violations for Electrons
- Diffuse Hard X-ray Sources Discovered with the ASCA Galactic Plane Survey
- Astrophysical Limits on Lorentz Violation for All Charged Species
- Suzaku wide-band observations of SN 1006
- Evidence of a Curved Synchrotron Spectrum in the Supernova Remnant SN 1006
- Cosmic ray acceleration parameters from multi-wavelength observations. The case of SN 1006
- Constraints On the Diffusive Shock Acceleration From the Nonthermal X-ray Thin Shells In SN1006 NE Rim
- Surviving companions of Type Ia supernovae: theory and observations
- RXTE, ROSAT and ASCA Observations of G347.3-0.5 (RX J1713.7-3946): Probing Cosmic Ray Acceleration by a Galactic Shell-Type Supernova Remnant
- Upper limits to the SN1006 multi-TeV gamma-ray flux from H.E.S.S. observations
- Dynamics of Mesoscale Magnetic Field in Diffusive Shock Acceleration
- Nonthermal emission of supernova remnant SN 1006 revisited: theoretical model and the H.E.S.S. results
- Bounds on Spin-Dependent Lorentz Violation From Inverse Compton Observations
- Shocks and Particle Acceleration in Supernova Remnants: Observational Features
- Non-Thermal X-ray Emission from the Northwestern Rim of the Galactic Supernova Remnant G266.2-1.2 (RX J0852.0-4622)
- Prediction of the diffuse neutrino flux from cosmic ray interactions near Supernova Remnants
- The Likely Fermi detection of the supernova remnant SN 1006
- A high resolution UV absorption spectrum of supernova ejecta in SN1006
- XMM-Newton Observations of G32.45+0.1and G38.55+0.0: diffuse hard X-ray sources found with the ASCA Galactic Plane Survey
- XMM-Newton Large Program on SN1006 - I: Methods and Initial Results of Spatially-Resolved Spectroscopy
- On the mechanism for breaks in the cosmic ray spectrum
- Nonthermal Radiation from Type Ia Supernova Remnants
- Time evolution of broadband non-thermal emission from supernova remnants in different circumstellar environments
- Spatially resolved broad-band synchrotron emission from the non-thermal limbs of SN1006
- On the possible reason for non-detection of TeV-protons in SNRs
- The origin of non-thermal X-ray filaments and TeV emission in young SNRs
- Electron Acceleration in Middle-age Shell-type -Ray Supernova Remnants
- X-Ray Observations of SN 1006 with Integral
- VHE Gamma-ray supernova remnants
- Fermi LAT detection of the supernova remnant SN 1006 revisited: the south-west limb
- A Review of X-ray Observations of Supernova Remnants
- XMM-Newton Large Program on SN1006 - II: Thermal Emission
- G337.2+0.1: a new X-ray supernova remnant?
- ASCA and RXTE Observations of Non-Thermal X-ray Emission from Galactic Supernova Remnants: G156.2+5.7
- Global Constraints on Diffusive Particle Acceleration by Strong Nonrelativistic Shocks
- Hadronic particle acceleration in the supernova remnant SN 1006 as traced by Fermi-LAT observations
- Non-thermal neutrinos from supernovae leaving a magnetar
- Synchrotron cutoff in Ultraluminous X-ray sources
- Non-Thermal X-ray and Radio Emission from the SNR N 157B
- An X-Ray Detection Possibility of Star-Formation-Bursting Proto-Elliptical Galaxies