2014A&A...566A..76G


Query : 2014A&A...566A..76G

2014A&A...566A..76G - Astronomy and Astrophysics, volume 566A, 76-76 (2014/6-1)

The search for faint radio supernova remnants in the outer Galaxy: five new discoveries.

GERBRANDT S., FOSTER T.J., KOTHES R., GEISBUESCH J. and TUNG A.

Abstract (from CDS):

High resolution and sensitivity large-scale radio surveys of the Milky Way are critical in the discovery of very low surface brightness supernova remnants (SNRs), which may constitute a significant portion of the Galactic SNRs still unaccounted for (ostensibly the ``missing SNR problem''). The overall purpose here is to present the results of a systematic, deep data-mining of the Canadian Galactic plane Survey (CGPS) for faint, extended non-thermal and polarized emission structures that are likely the shells of uncatalogued SNRs. We examine 5x5 degree mosaics from the entire 1420MHz continuum and polarization dataset of the CGPS after removing unresolved ``point'' sources and subsequently smoothing them. Newly revealed extended emission objects are compared to similarly prepared CGPS 408MHz continuum mosaics, as well as to source-removed mosaics from various existing radio surveys at 4.8GHz, 2.7GHz, and 327MHz, to identify candidates with non-thermal emission characteristics. We integrate flux densities at each frequency to characterise the radio spectra behaviour of these candidates. We further look for mid- and high-frequency (1420MHz, 4.8GHz) ordered polarized emission from the limb brightened ``shell''-like continuum features that the candidates sport. Finally, we use IR and optical maps to provide additional backing evidence. Here we present evidence that five new objects, identified as filling all or some of the criteria above, are strong candidates for new SNRs. These five are designated by their Galactic coordinate names G108.5+11.0, G128.5+2.6, G149.5+3.2, G150.8+3.8, and G160.1-1.1. The radio spectrum of each is presented, highlighting their steepness, which is characteristic of synchrotron radiation. CGPS 1420MHz polarization data and 4.8 GHz polarization data also provide evidence that these objects are newly discovered SNRs. These discoveries represent a significant increase in the number of SNRs known in the outer Galaxy second quadrant of longitude (90°<l<180°), and suggests that deep mining of other current and future Milky Way surveys will find even more objects and help to reconcile the difference between expected numbers of Galactic SNRs and the smaller number of currently known SNRs.

Abstract Copyright:

Journal keyword(s): ISM: supernova remnants - radio continuum: ISM - techniques: image processing

CDS comments: Table 1 G150-S-shell not in SIMBAD.

Simbad objects: 16

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Number of rows : 16
N Identifier Otype ICRS (2000)
RA
ICRS (2000)
DEC
Proper motions Parallaxes Redshift Rad. vel. cz Mag U Mag B Mag V Mag R Mag I Sp type Morph. type Angular size #ref
1983 - 2024
1 SNR G128.5+02.6 SNRemnant 01 44 +64.9 ~ ~ ~           ~ ~ ~ ~ ~ 3
2 NVSS J033711+615302 Radio 03 37 12.2 +61 53 01 ~ ~ ~           ~ ~ ~ ~ ~ 14
3 SNR G152.4-02.1 SNRemnant 04 07 +49.3 ~ ~ ~           ~ ~ 100.0 95.0 ~ 17
4 SNR G149.5+03.2 SNRemnant 04 17 +55.1 ~ ~ ~           ~ ~ ~ ~ ~ 6
5 SNR G150.8+03.8 SNRemnant 04 26 +54.6 ~ ~ ~           ~ ~ ~ ~ ~ 8
6 SNR G160.1-01.1 SNRemnant 04 43 +44.5 ~ ~ ~           ~ ~ ~ ~ ~ 3
7 SNR G190.9-02.2 SNRemnant 06 02 +18.4 ~ ~ ~           ~ ~ 70.0 60.0 ~ 15
8 SNR G085.4+00.7 SNRemnant 20 50.7 +45 22 ~ ~ ~           ~ ~ 24 24 90 32
9 SNR G085.9-00.6 SNRemnant 20 58.7 +44 53 ~ ~ ~           ~ ~ 24.0 24.0 90 30
10 SNR G096.0+02.0 SNRemnant 21 30 30 +53 59.0 ~ ~ ~           ~ ~ 26.0 26.0 90 22
11 SNR G108.5+11.0 SNRemnant 22 00 +68.9 ~ ~ ~           ~ ~ ~ ~ ~ 1
12 SNR G107.5-01.5 SNRemnant 22 52 +57.7 ~ ~ ~           ~ ~ ~ ~ ~ 14
13 SNR G108.2-00.6 SNRemnant 22 53 37.0 +58 51 36 ~ ~ ~           ~ ~ 70.0 54.0 ~ 20
14 NAME Cas A SNRemnant 23 23 24.000 +58 48 54.00 ~ ~ ~     14.30     ~ ~ 5.0 5.0 90 2707
15 SNR G113.0+00.2 SNRemnant 23 36 35 +61 22.0 ~ ~ ~           ~ ~ 40 17 ~ 18
16 SNR G151.2+02.8 SNRemnant ~ ~ ~ ~ ~           ~ ~ ~ ~ ~ 4

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