2013ApJ...770..128I


Query : 2013ApJ...770..128I

2013ApJ...770..128I - Astrophys. J., 770, 128 (2013/June-3)

Super-luminous type IC supernovae: catching a magnetar by the tail.

INSERRA C., SMARTT S.J., JERKSTRAND A., VALENTI S., FRASER M., WRIGHT D., SMITH K., CHEN T.-W., KOTAK R., PASTORELLO A., NICHOLL M., BRESOLIN F., KUDRITZKI R.P., BENETTI S., BOTTICELLA M.T., BURGETT W.S., CHAMBERS K.C., ERGON M., FLEWELLING H., FYNBO J.P.U., GEIER S., HODAPP K.W., HOWELL D.A., HUBER M., KAISER N., LELOUDAS G., MAGILL L., MAGNIER E.A., McCRUM M.G., METCALFE N., PRICE P.A., REST A., SOLLERMAN J., SWEENEY W., TADDIA F., TAUBENBERGER S., TONRY J.L., WAINSCOAT R.J., WATERS C. and YOUNG D.

Abstract (from CDS):

We report extensive observational data for five of the lowest redshift Super-Luminous Type Ic Supernovae (SL-SNe Ic) discovered to date, namely, PTF10hgi, SN2011ke, PTF11rks, SN2011kf, and SN2012il. Photometric imaging of the transients at +50 to +230 days after peak combined with host galaxy subtraction reveals a luminous tail phase for four of these SL-SNe. A high-resolution, optical, and near-infrared spectrum from xshooter provides detection of a broad He I λ10830 emission line in the spectrum (+50 days) of SN2012il, revealing that at least some SL-SNe Ic are not completely helium-free. At first sight, the tail luminosity decline rates that we measure are consistent with the radioactive decay of 56Co, and would require 1-4 M of 56Ni to produce the luminosity. These 56Ni masses cannot be made consistent with the short diffusion times at peak, and indeed are insufficient to power the peak luminosity. We instead favor energy deposition by newborn magnetars as the power source for these objects. A semi-analytical diffusion model with energy input from the spin-down of a magnetar reproduces the extensive light curve data well. The model predictions of ejecta velocities and temperatures which are required are in reasonable agreement with those determined from our observations. We derive magnetar energies of 0.4 ≲ E(1051 erg) ≲ 6.9 and ejecta masses of 2.3 ≲ Mej(M) ≲ 8.6. The sample of five SL-SNe Ic presented here, combined with SN 2010gx–the best sampled SL-SNe Ic so far–points toward an explosion driven by a magnetar as a viable explanation for all SL-SNe Ic.

Abstract Copyright:

Journal keyword(s): stars: magnetars - supernovae: general - supernovae: individual (PTF10hgi, PTF11rks, SN 2011ke, SN 2011kf, SN 2012il)

Simbad objects: 23

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Number of rows : 23
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 IC 18 EmG 00 28 34.951 -11 35 12.30   15   16.34   ~ 26 0
2 SN 2011kg SN* 01 39 45.51 +29 55 27.0           SLSNIc 69 1
3 SN 2007gr SN* 02 43 27.98 +37 20 44.7       12.77   SNIc 237 1
4 SN 2006gy SN* 03 17 27.06 +41 24 19.5       14.20   SNIIn 340 1
5 V* CM Tau Psr 05 34 31.9474694616 +22 00 52.153698024           ~ 5263 0
6 SN 1987A SN* 05 35 28.020 -69 16 11.07           SNIIpec 4942 2
7 PS1-11bam SN* 08 41 14.192 +44 01 56.95           SLSNIc 28 0
8 SN 2012il SN* 09 46 12.91 +19 50 28.7           SLSNIc 64 1
9 Anon J094613+1950 G 09 46 12.91944 +19 50 28.6224           ~ 3 0
10 SN 2010gx SN* 11 25 46.71 -08 49 41.4           SNIc 158 1
11 SN 2008es SN* 11 56 49.13 +54 27 25.7           SNIIL 116 1
12 SN 2004aw SN* 11 57 50.24 +25 15 55.1   18.06       SNIc 201 1
13 SN 2005ap SN* 13 01 14.84 +27 43 31.4       18.20   SLSNIc 142 1
14 SN 2007bi SN* 13 19 20.19 +08 55 44.3       18.3   SNIcpec 220 1
15 SN 1994I SN* 13 29 54.072 +47 11 30.50     12.9     SNIc 626 1
16 SN 2011dh SN* 13 30 05.10555 +47 10 10.9227           SNIIb 391 1
17 SN 2011ke SN* 13 50 57.77 +26 16 42.8     18.6     SLSNIc 86 1
18 [DAB2006b] J143227.42+333225.1 SN* 14 32 27.395 +33 32 24.83           SNIc 113 0
19 SN 2011kf SN* 14 36 57.53 +16 30 56.6           SLSNIc 39 1
20 PTF 09cnd SN* 16 12 08.94 +51 29 16.1           SLSNIc 114 0
21 SN 2010md SN* 16 37 47.00 +06 12 32.3           SNIc 94 1
22 SN 1998bw SN* 19 35 03.17 -52 50 46.1   14.09       SNIc 1826 2
23 SN 2006oz SN* 22 08 53.56 +00 53 50.4           SLSNIc 86 1

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