2018ApJ...867...44L


Query : 2018ApJ...867...44L

2018ApJ...867...44L - Astrophys. J., 867, 44-44 (2018/November-1)

Evidence for cosmic-ray escape in the Small Magellanic Cloud using Fermi Γrays.

LOPEZ L.A., AUCHETTL K., LINDEN T., BOLATTO A.D., THOMPSON T.A. and RAMIREZ-RUIZ E.

Abstract (from CDS):

Galaxy formation simulations demonstrate that cosmic-ray (CR) feedback may be important in the launching of galactic-scale winds. CR protons dominate the bulk of the CR population, yet most observational constraints of CR feedback come from synchrotron emission of CR electrons. In this paper, we analyze 105 months of Fermi Gamma-ray Space Telescope observations of the Small Magellanic Cloud (SMC), with the aim of exploring CR feedback and transport in an external galaxy. We produce maps of the 2-300 GeV emission and detect statistically significant extended emission along the "Bar" and the "Wing," where active star formation is occurring. Gamma-ray emission is not detected above 13 GeV, and we set stringent upper limits on the flux above this energy. We find the best fit to the gamma-ray spectrum is a single-component model with a power law of index Γ=-2.10±0.06–0.05+0.07 and an exponential cutoff energy of Ec=12.2±4.5–1.5+1.4 GeV. We assess the relative contribution of pulsars and CRs to the emission, and we find that pulsars may produce up to 10±1–1+2% of the flux above 100 MeV. Thus, we attribute most of the gamma-ray emission (based on its spectrum and morphology) to CR interactions with the interstellar medium. We show that the gamma-ray emissivity of the SMC is at least five times smaller than that of the Milky Way and that the SMC is far below the "calorimetric limit," where all CR protons experience pion losses. We interpret these findings as evidence that CRs are escaping the SMC via advection and diffusion.

Abstract Copyright: © 2018. The American Astronomical Society. All rights reserved.

Journal keyword(s): cosmic rays - gamma rays: ISM - Magellanic Clouds

Nomenclature: Fig. 1, Table 1: [LAL2018] PSN (Nos PS1-PS3).

Simbad objects: 18

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Number of rows : 18
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 [LAL2018] PS1 gam 00 23.6 -68 18           ~ 1 0
2 NGC 104 GlC 00 24 05.359 -72 04 53.20     4.09     ~ 3915 0
3 2MASS J00240672-6820546 Bla 00 24 06.7227818928 -68 20 54.585987180           ~ 35 1
4 NAME SMC B0026-7101 Bla 00 28 41.5636966584 -70 45 15.927580080       16.62   ~ 44 0
5 [LAL2018] PS3 gam 00 47.2 -70 48           ~ 1 0
6 NGC 253 SyG 00 47 33.134 -25 17 19.68   8.03   6.94 8.1 ~ 3336 2
7 NAME SMC G 00 52 38.0 -72 48 01   2.79 2.2     ~ 11145 1
8 NGC 362 GlC 01 03 14.26 -70 50 55.6     6.58     ~ 1084 0
9 NAME SMC Bar PoG 01 05 -72.6           ~ 235 0
10 3FGL J0112.9-7506 BLL 01 12 31.37119 -75 06 17.9014           ~ 16 0
11 [LAL2018] PS2 gam 01 21.2 -72 16           ~ 1 0
12 AT20G J014554-674649 BLL 01 45 54.85 -67 46 48.8           ~ 26 0
13 M 77 Sy2 02 42 40.7091669408 -00 00 47.859690204 9.70 9.61 8.87 10.1 9.9 ~ 4601 2
14 NAME Magellanic Clouds GrG 03 00 -71.0           ~ 7063 0
15 NAME LMC G 05 23 34.6 -69 45 22     0.4     ~ 17429 0
16 RMC 136 Cl* 05 38 42.396 -69 06 03.36   5.81 5.40     ~ 2018 2
17 M 82 AGN 09 55 52.430 +69 40 46.93 9.61 9.30 8.41     ~ 5860 6
18 2FGL J2351.6-7558 BLL 23 51 16.12994 -76 00 15.5560           ~ 28 0

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