2017ApJ...851...54W


Query : 2017ApJ...851...54W

2017ApJ...851...54W - Astrophys. J., 851, 54-54 (2017/December-2)

A Monte Carlo approach to magnetar-powered transients. II. Broad-lined Type Ic supernovae not associated with GRBs.

WANG L.J., CANO Z., WANG S.Q., ZHENG W.K., LIU L.D., DENG J.S., YU H., DAI Z.G., HAN Y.H., XU D., QIU Y.L., WEI J.Y., LI B. and SONG L.M.

Abstract (from CDS):

Broad-lined type Ic supernovae (SNe Ic-BL) are a subclass of rare core-collapse SNe whose energy source is debated in the literature. Recently, a series of investigations on SNe Ic-BL with the magnetar (plus 56Ni) model were carried out. Evidence for magnetar formation was found for the well-observed SNe Ic-BL 1998bw and 2002ap. In this paper, we systematically study a large sample of SNe Ic-BL not associated with gamma-ray bursts (GRBs). We use photospheric velocity data determined in a homogeneous way. We find that the magnetar+56Ni model provides a good description of the light curves and velocity evolution of our sample of SNe Ic-BL, although some SNe (not all) can also be described by the pure-magnetar model or by the two-component pure-56Ni model (three out of 12 are unlikely to be explained by two-component model). In the magnetar+56Ni model, the amount of 56Ni required to explain their luminosity is significantly reduced, and the derived initial explosion energy is, in general, in accordance with neutrino heating. Some correlations between different physical parameters are evaluated, and their implications regarding magnetic field amplification and the total energy reservoir are discussed.

Abstract Copyright: © 2017. The American Astronomical Society. All rights reserved.

Journal keyword(s): stars: neutron - supernovae: general - supernovae: general

Simbad objects: 21

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Number of rows : 21
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 2002ap SN* 01 36 23.85 +15 45 13.2   13.11 14.54     SNIc-BL 563 1
2 SN 2011kg SN* 01 39 45.51 +29 55 27.0           SLSNIc 69 1
3 SN 2007D SN* 03 18 38.71 +37 36 26.4     18.2     SNIc-BL 28 1
4 SN 2012ap SN* 05 00 13.72 -03 20 51.2           SNIc 76 2
5 SN 2010bh SN* 07 10 30.63 -56 15 19.7           SNIc 287 1
6 SN 1997ef SN* 07 57 02.87 +49 33 41.3     16.5     SNIc-BL 270 1
7 SN 1993J SN* 09 55 24.77476 +69 01 13.7026   10.8 12.0     SNIIb 1415 1
8 PS1-14bj SN* 10 02 08.433 +03 39 19.02           SLSN-I 45 0
9 SN 2009bb SN* 10 31 33.92 -39 57 28.2           SNIc 168 1
10 SN 2010ah SN* 11 44 02.99 +55 41 27.6           SNIc 51 1
11 SN 2007bg SN* 11 49 26.18 +51 49 21.8 20.1 19.8 18.8     SNIc-BL 66 1
12 SN 2010ay SN* 12 35 27.19 +27 04 02.8           SNIc 47 1
13 iPTF 16asu SN* 12 59 09.28 +13 48 09.2           SNIc 41 0
14 SN 1994I SN* 13 29 54.072 +47 11 30.50     12.9     SNIc 625 1
15 SN 2010md SN* 16 37 47.00 +06 12 32.3           SNIc 94 1
16 PTF 10qts SN* 16 41 37.60 +28 58 21.1           SNIc 21 0
17 SN 1998bw SN* 19 35 03.17 -52 50 46.1   14.09       SNIc 1820 2
18 iPTF 14bfu SN* 21 52 30.00 +32 00 52.5           SNIc 63 0
19 PTF 10vgv SN* 22 16 01.17 +40 52 03.3           SNIc 27 0
20 SN 2007ru SN* 23 07 23.19 +43 35 34.1     17.5     SNIc-BL 48 1
21 SN 2003jd SN* 23 21 03.38 -04 53 45.5   16.34       SNIc-BL 139 1

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