2015A&A...574A..60T


Query : 2015A&A...574A..60T

2015A&A...574A..60T - Astronomy and Astrophysics, volume 574A, 60-60 (2015/2-1)

Early-time light curves of Type Ib/c supernovae from the SDSS-II Supernova Survey.

TADDIA F., SOLLERMAN J., LELOUDAS G., STRITZINGER M.D., VALENTI S., GALBANY L., KESSLER R., SCHNEIDER D.P. and WHEELER J.C.

Abstract (from CDS):

Type Ib/c supernovae (SNe Ib/c) have been investigated in several single-object studies; however, there is still a paucity of works concerning larger, homogeneous samples of these hydrogen-poor transients, in particular regarding the premaximum phase of their light curves. In this paper we present and analyze the early-time optical light curves (LCs, ugriz) of 20 SNe Ib/c from the Sloan Digital Sky Survey (SDSS) SN survey II, aiming to study their observational and physical properties, as well as to derive their progenitor parameters. High-cadence, multiband LCs are fitted with a functional model and the best-fit parameters are compared among the SN types. Bolometric LCs (BLCs) are constructed for the entire sample. We also computed the black-body (BB) temperature (TBB) and photospheric radius (Rph) evolution for each SN via BB fits on the spectral energy distributions. In addition, the bolometric properties are compared to both hydrodynamical and analytical model expectations. Complementing our sample with literature data, we find that SNe Ic and Ic-BL (broad-line) have shorter rise times than those of SNe Ib and IIb. The decline rate parameter, Δm15, is similar among the different subtypes. SNe Ic appear brighter and bluer than SNe Ib, but this difference vanishes if we consider host galaxy extinction corrections based on colors. Templates for SN Ib/c LCs are presented. Our SNe have typical TBB of ∼10000K at the peak and Rph of ∼1015cm. Analysis of the BLCs of SNe Ib and Ic gives typical ejecta masses Mej≃3.6-5.7M, energies EK≃1.5-1.7x1051erg, and M(56Ni)≃0.3M. Higher values for EK and M(56Ni) are estimated for SNe Ic-BL (Mej≃5.4M, EK≃10.7x1051erg, M(56Ni)≃1.1M). For the majority of SNe Ic and Ic-BL, we can put strong limits (<2-4days) on the duration of the expected early-time plateau. Less stringent limits can be placed on the duration of the plateau for the sample of SNe Ib. In the single case of SN Ib 2006lc, a>5.9-days plateau seems to be detected. The rising part of the BLCs is reproduced by power laws with index <2. For two events (SN 2005hm and SN 2007qx), we find signatures of a possible shock break-out cooling tail. Based on the limits for the plateau length and on the slow rise of the BLCs, we find that in most of our SNe Ic and Ic-BL the 56Ni is mixed out to the outer layers, suggesting that SN Ic progenitors are de facto helium poor. The derived progenitor parameters (56Ni, EK, Mej) are consistent with previous works.

Abstract Copyright:

Journal keyword(s): supernovae: general

VizieR on-line data: <Available at CDS (J/A+A/574/A60): template.dat>

Simbad objects: 72

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Number of rows : 72
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 LEDA 1183580 G 00 01 09.195 +01 04 09.47           ~ 7 0
2 SN 2007nc SN* 00 01 09.30 +01 04 06.5           SNIb? 9 1
3 Z 382-29 EmG 00 10 39.3515886072 -00 03 10.354322700   15.3       ~ 21 0
4 SN 2007sj SN* 00 10 39.63 -00 03 10.2           SNIb/c 9 1
5 SN 2007qx SN* 00 27 41.78 +01 13 59.7           SNIb 11 1
6 LEDA 1188561 G 00 27 41.898 +01 13 56.63           ~ 5 0
7 SN 2004fe SN* 00 30 11.27 +02 05 23.5     18.1     SNIc 51 1
8 SN 2006jo SN* 01 23 14.72 -00 19 46.7           SNIb 22 1
9 2MASX J01231495-0019488 GiC 01 23 14.9725732272 -00 19 48.919361952   17.01   16.16   ~ 13 0
10 SN 2011fu SN* 02 08 21.40 +41 29 12.3           SNII 56 1
11 SN 1998dt SN* 02 28 35.7 -10 33 00           SNIb 44 1
12 SN 2006fo SN* 02 32 38.89 +00 37 03.0           SNIb 46 1
13 UGC 2019 LSB 02 32 39.2970234600 +00 37 02.300255868   14.4       ~ 56 0
14 SN 2004dn SN* 02 35 37.30 +37 37 54.2     17.5     SNIc 26 1
15 SN 2007gr SN* 02 43 27.98 +37 20 44.7       12.77   SNIc 235 1
16 SN 2007Y SN* 03 02 35.92 -22 53 50.1     17.5     SNIb 118 1
17 Anon J030829+0053 G 03 08 29.668 +00 53 20.14           ~ 5 0
18 SN 2005kr SN* 03 08 29.67 +00 53 20.2   22.1       SNIc 24 1
19 SN 2007gl SN* 03 11 33.21 -00 44 46.7       18.8   SNIb/c 13 1
20 Z 390-17 EmG 03 11 33.380 -00 44 34.58   15.7       ~ 21 0
21 SN 2005em SN* 03 13 47.74 -00 14 37.0     18.1     SNIc 30 2
22 SN 2006aj SN* 03 21 39.670 +16 52 02.27 17.96 19.11 17.40     SNIc-BL 940 1
23 NAME Chandra Deep Field-South reg 03 32 28.0 -27 48 30           ~ 2086 1
24 Anon J033330-0040 G 03 33 30.441 -00 40 38.03           ~ 4 0
25 SN 2006nx SN* 03 33 30.63 -00 40 38.2           SNIb/c 30 1
26 SDSS J034918.34-004129.4 G 03 49 18.33 -00 41 29.4           ~ 5 0
27 SN 2005mn SN* 03 49 18.44 -00 41 31.5   21.2       SNIb 12 1
28 SN 2010bh SN* 07 10 30.63 -56 15 19.7           SNIc 287 1
29 SN 2008D SN* 09 09 30.625 +33 08 20.16     17.5     SNIb 405 1
30 SN 2007uy SN* 09 09 35.40 +33 07 09.9     17.2     SNIbpec 93 1
31 SN 1993J SN* 09 55 24.77476 +69 01 13.7026   10.8 12.0     SNIIb 1417 1
32 SN 2014J SN* 09 55 42.12 +69 40 25.9           SNIa-norm 410 1
33 SN 2009bb SN* 10 31 33.92 -39 57 28.2           SNIc 168 1
34 SN 2003dh SN* 10 44 50.030 +21 31 18.15     16.2     SNIcpec 1208 1
35 SN 2004aw SN* 11 57 50.24 +25 15 55.1   18.06       SNIc 200 1
36 SN 2013dk SN* 12 01 52.72 -18 52 18.3           SNIc 20 1
37 SN 2008ax SN* 12 30 40.80 +41 38 16.1   23.6 23.5 14.1 22.6 SNIIb 260 1
38 SN 1994I SN* 13 29 54.072 +47 11 30.50     12.9     SNIc 625 1
39 SN 2011dh SN* 13 30 05.10555 +47 10 10.9227           SNIIb 389 1
40 SN 2011fe SN* 14 03 05.711 +54 16 25.22   10.12 10.06     SNIa-norm 673 1
41 iPTF 13bvn SN* 15 00 00.152 +01 52 53.17           SNIb 171 0
42 SN 2004dk SN* 16 21 48.93 -02 16 17.3   17.789 17.6     SNIb 81 1
43 SN 1998bw SN* 19 35 03.17 -52 50 46.1   14.09       SNIc 1821 2
44 Anon J203218-0100 G 20 32 18.330 -01 00 52.98           ~ 2 0
45 SN 2007ms SN* 20 32 18.34 -01 00 53.1           SNIIpec 12 1
46 SN 2011ei SN* 20 34 22.62 -31 58 23.6           SNIIb 38 1
47 SN 2007jy SN* 20 51 21.43 +00 23 57.8           SNIb? 9 1
48 Anon J205121+0023 G 20 51 21.4356747336 +00 23 57.767649792           ~ 4 0
49 SN 2006fe SN* 20 52 09.0 -00 30 39           SNIc 13 1
50 2MASS J20520909-0030393 EmG 20 52 09.0841852101 -00 30 39.320143973         16.662 ~ 8 0
51 Z 374-27 G 20 55 19.2636532944 +00 32 26.087987580   15.2       ~ 27 1
52 SN 2005hl SN* 20 55 19.80 +00 32 34.5   18.9       SNIb 19 1
53 SN 2005fk SN* 21 15 19.84 -00 22 58.6   21.8       SNIc 12 1
54 Anon J211519-0022 G 21 15 19.84 -00 22 58.6           ~ 3 0
55 Anon J213756-0001 G 21 37 56.527 -00 01 57.65           ~ 8 0
56 SN 2005ks SN* 21 37 56.56 -00 01 56.9   22.5       SNIc 22 1
57 Anon J213900-0101 G 21 39 00.64 -01 01 38.6           ~ 5 1
58 SN 2005hm SN* 21 39 00.65 -01 01 38.7   20.6       SNIb 22 1
59 LSQ 12dwl SN* 22 12 41.53 +00 30 43.1           SNIc 50 1
60 PTF 10vgv SN* 22 16 01.17 +40 52 03.3           SNIc 27 0
61 SN 1999ex SN* 22 16 07.27 -36 50 53.7   17.35       SNIb 141 2
62 SDSS J222430.87+001212.3 G 22 24 30.870 +00 12 12.16           ~ 1 0
63 SDSS-II SN 14475 SN* 22 24 30.901 +00 12 12.28           SNIc 8 0
64 SN 2006qk SN* 22 25 32.3 +00 09 14           SNIc: 23 1
65 2MASS J22253239+0009149 G 22 25 32.3807278230 +00 09 14.883567486           ~ 7 0
66 Anon J223507-0106 G 22 35 07.733 -01 06 33.49           ~ 3 0
67 SN 2007qv SN* 22 35 07.91 -01 06 37.5           SNII 10 1
68 NGC 7364 rG 22 44 24.3715638768 -00 09 43.659115272   13.8       ~ 104 0
69 SN 2006lc SN* 22 44 24.48 -00 09 53.5 18.3 18.3 17.2     SNIb 47 1
70 SN 2009jf SN* 23 04 52.98 +12 19 59.5           SNIb 106 1
71 SN 2003jd SN* 23 21 03.38 -04 53 45.5   16.34       SNIc-BL 139 1
72 SN 1999dn SN* 23 36 14.70 +02 09 08.8     16.0     SNIb 109 1

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