2009ApJ...700..727B


Query : 2009ApJ...700..727B

2009ApJ...700..727B - Astrophys. J., 700, 727-740 (2009/July-3)

The stellar ancestry of supernovae in the Magellanic Clouds. I. The most recent supernovae in the Large Magellanic Cloud.

BADENES C., HARRIS J., ZARITSKY D. and PRIETO J.L.

Abstract (from CDS):

We use the star formation history (SFH) map of the Large Magellanic Cloud recently published by Harris and Zaritsky to study the sites of the eight smallest (and presumably youngest) supernova remnants (SNRs) in the Cloud: SN 1987A, N158A, N49, and N63A (core collapse remnants), 0509-67.5, 0519-69.0, N103B, and DEM L71 (Type Ia remnants). The local SFHs provide unique insights into the nature of the supernova (SN) progenitors, which we compare with the properties of the SN explosions derived from the remnants themselves and from SN light echoes. We find that all the core collapse SNe that we have studied are associated with vigorous star formation (SF) in the recent past. In the case of SN 1987A, the time of the last peak of SF (12 Myr) matches the lifetime of a star with the known mass of its blue supergiant progenitor (∼20 M). More recent peaks of SF can lead to SNe with more massive progenitors, which opens the possibility of a Type Ib/c origin for SNRs N158A and N63A. Stars more massive than 21.5 M are very scarce around SNR N49, implying that the magnetar SGR 0526-66 in this SNR was either formed elsewhere or came from a progenitor with a mass well below the 30 M threshold suggested in the literature. Three of our four Ia SNRs are associated with old, metal-poor stellar populations. This includes SNR 0509-67.5, which is known to have been originated by an extremely bright Type Ia event, and yet is located very far away from any sites of recent SF, in a population with a mean age of 7.9 Gyr. The Type Ia SNR N103B, on the other hand, is associated with recent SF, and might have had a relatively younger and more massive progenitor with substantial mass loss before the explosion. We discuss these results in the context of our present understanding of core collapse and Type Ia SN progenitors.

Abstract Copyright:

Journal keyword(s): galaxies: individual: Large Magellanic Cloud - galaxies: stellar content - supernova remnants - supernovae: general

Simbad objects: 25

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Number of rows : 25
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 SN 1572A SN* 00 25 21.5 +64 08 27           B8 1188 1
2 NAME SMC G 00 52 38.0 -72 48 01   2.79 2.2     ~ 11152 1
3 NAME Magellanic Clouds GrG 03 00 -71.0           ~ 7067 0
4 SNR B0505-67.9 SNR 05 05 42.0 -67 52 29           ~ 141 0
5 SNR J050555-680150 SNR 05 05 55.00 -68 01 54.0           ~ 84 0
6 LHA 120-N 103B EmO 05 08 47.8 -68 45 39           ~ 223 1
7 NGC 1850 Cl* 05 08 50.190 -68 45 35.65   8.84 8.96     ~ 273 1
8 SNR J050854-684447 SNR 05 08 58.7 -68 43 46           ~ 152 2
9 SNR B0509-67.5 SNR 05 09 31 -67 31.3           ~ 224 0
10 SNR B0519-69.0 SNR 05 19 35.14 -69 02 00.5           ~ 156 0
11 NAME LMC Bar PoG 05 22 08 -69 23.5           ~ 310 0
12 NAME LMC G 05 23 34.6 -69 45 22     0.4     ~ 17438 0
13 SNR J052559-660453 SNR 05 26 00.4 -66 05 02     12.71     ~ 437 2
14 PSR B0525-66 Psr 05 26 00.7 -66 04 35           ~ 545 1
15 LH 53 As* 05 26.1 -66 14           ~ 32 0
16 KMHK 889 Cl* 05 26 16.050 -66 03 10.06   12.55 12.41     ~ 17 0
17 SN 1987A SN* 05 35 28.020 -69 16 11.07           SNIIpec 4939 2
18 NGC 2030 HII 05 35 33.6 -66 02 26           ~ 73 0
19 SNR B0535-66.0 SNR 05 35 43.1 -66 01 59           ~ 175 1
20 RMC 136 Cl* 05 38 42.396 -69 06 03.36   5.81 5.40     ~ 2019 2
21 PSR B0540-69 Psr 05 40 11.2000490438 -69 19 54.198559829           ~ 905 3
22 SN 1993J SN* 09 55 24.77476 +69 01 13.7026   10.8 12.0     SNIIb 1419 1
23 NAME Lupus SN SNR 15 02 22.1 -42 05 49           ~ 1329 1
24 NAME Kepler SNR Rad 17 30 40.5 -21 29 14           ~ 795 4
25 3C 461 BL? 23 23 24.000 +58 48 54.00     14.30     ~ 2792 1

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