arXiv Analytics

Sign in

arXiv:1205.7021 [astro-ph.GA]AbstractReferencesReviewsResources

Magnetic Nanoparticles in the Interstellar Medium: Emission Spectrum and Polarization

B. T. Draine, Brandon Hensley

Published 2012-05-31, updated 2012-06-09Version 2

The presence of ferromagnetic or ferrimagnetic nanoparticles in the interstellar medium would give rise to magnetic dipole radiation at microwave and submm frequencies. Such grains may account for the strong mm-wavelength emission observed from a number of low-metallicity galaxies, including the Small Magellanic Cloud. We show how to calculate the absorption and scattering cross sections for such grains, with particular attention to metallic Fe, magnetite Fe3O4, and maghemite gamma-Fe2O3, all potentially present in the interstellar medium. The rate of Davis-Greenstein alignment by magnetic dissipation is also estimated. We determine the temperature of free-flying magnetic grains heated by starlight and we calculate the polarization of the magnetic dipole emission from both free-fliers and inclusions. For inclusions, the magnetic dipole emission is expected to be polarized orthogonally relative to the normal electric dipole radiation. Finally, we present self-consistent dielectric functions for metallic Fe, magnetite Fe3O4, and maghemite gamma-Fe2O3, enabling calculation of absorption and scattering cross sections from microwave to X-ray wavelengths.

Comments: submitted to Ap.J. Fig. 10 has been corrected. Minor changes to the discussion in section 10.2.2
Related articles: Most relevant | Search more
arXiv:1410.1537 [astro-ph.GA] (Published 2014-10-06)
Momentum Injection by Supernovae in the Interstellar Medium
arXiv:1404.3691 [astro-ph.GA] (Published 2014-04-14)
Turbulence in the Interstellar Medium
arXiv:1412.5182 [astro-ph.GA] (Published 2014-12-16)
Physical Processes in the Interstellar Medium