English

Extragalactic magnetism with SOFIA (SALSA Legacy Program) -- IV: Program overview and first results on the polarization fraction

Astrophysics of Galaxies 2022-09-14 v2

Abstract

We present the first data release of the Survey on extragALactic magnetiSm with SOFIA (SALSA Legacy Program) with a set of 14 nearby (<20<20 Mpc) galaxies with resolved imaging polarimetric observations using HAWC+ from 5353 to 214214 μ\mum at a resolution of 5185-18" (9090 pc - 11 kpc). We introduce the definitions and background on extragalactic magnetism, and present the scientific motivation and sample selection of the program. Here, we focus on the general trends in the emissive polarization fraction. Far-infrared polarimetric observations trace the thermal polarized emission of magnetically aligned dust grains across the galaxy disks with polarization fractions of P=015P=0-15% in the cold, Td=[19,48]T_{\rm d} = [19,48] K, and dense, log10(NHI+H2)=[19.96,22.91]\log_{10}(N_{\rm HI+H_{2}}) = [19.96,22.91], interstellar medium. The spiral galaxies show a median P154μm=3.3±0.9\langle P_{154\mu m} \rangle = 3.3\pm0.9 % across the disks. We report the first polarized spectrum of starburst galaxies showing a minimum within 8915489-154 μ\mum. The falling 5315453-154 μ\mum polarized spectrum may be due to a decrease in the dust grain alignment efficiency produced by variations in dust temperatures along the line-of-sight in the galactic outflow. We find that the starburst galaxies and the star-forming regions within normal galaxies have the lowest polarization fractions. We find that 50% (7 out of 14) of the galaxies require a broken power-law in the PNHI+H2P-N_{HI+H_{2}} and PTdP-T_{d} relations with three different trends. Group 1 has a relative increase of anisotropic random B-fields produced by compression or shear of B-fields in the galactic outflows, starburst rings, and inner-bar of galaxies; and Groups 2 and 3 have a relative increase of isotropic random B-fields driven by star-forming regions in the spiral arms, and/or an increase of dust grain alignment efficiency caused by shock-driven regions or evolutionary stages of a galaxy.

Keywords

Cite

@article{arxiv.2205.01105,
  title  = {Extragalactic magnetism with SOFIA (SALSA Legacy Program) -- IV: Program overview and first results on the polarization fraction},
  author = {Enrique Lopez-Rodriguez and Sui Ann Mao and Rainer Beck and Alejandro S. Borlaff and Evangelia Ntormousi and Konstantinos Tassis and Daniel A. Dale and Julia Roman-Duval and Kandaswamy Subramanian and Sergio Martin-Alvarez and Pamela M. Marcum and Susan E. Clark and William T. Reach and Doyal A. Harper and Ellen G. Zweibel},
  journal= {arXiv preprint arXiv:2205.01105},
  year   = {2022}
}

Comments

43 pages, 28 figures. Accepted for publication to ApJ

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