2016A&A...593A..18K


Query : 2016A&A...593A..18K

2016A&A...593A..18K - Astronomy and Astrophysics, volume 593A, 18-18 (2016/9-1)

Radio evolution of supernova SN 2008iz in M 82.

KIMANI N., SENDLINGER K., BRUNTHALER A., MENTEN K.M., MARTI-VIDAL I., HENKEL C., FALCKE H., MUXLOW T.W.B., BESWICK R.J. and BOWER G.C.

Abstract (from CDS):

We report on multi-frequency Very Large Array (VLA) and Very Long Baseline Interferometry (VLBI) radio observations for a monitoring campaign of supernova SN 2008iz in the nearby irregular galaxy M 82. We fit two models to the data, a simple time power-law, S∝tβ, and a simplified Weiler model, yielding decline indices of β=-1.22±0.07 (days 100-1500) and -1.41±0.02 (days 76-2167), respectively. The late-time radio light-curve evolution shows flux-density flares at ∼970 and ∼1400-days that are a factor of ∼2 and ∼4 higher than the expected flux, respectively. The later flare, except for being brighter, does not show signs of decline at least from results examined so far (2014 January 23; day 2167). We derive the spectral index, α, S∝να for frequencies 1.4 to 43GHz for SN 2008iz during the period from ∼430 to 2167 days after the supernova explosion. The value of α shows no signs of evolution and remains steep ~=-1 throughout the period, unlike that of SN 1993J, which started flattening at ∼day 970. From the 4.8 and 8.4GHz VLBI images, the supernova expansion is seen to start with a shell-like structure that becomes increasingly more asymmetric, then breaks up in the later epochs, with bright structures dominating the southern part of the ring. This structural evolution differs significantly from SN 1993J, which remains circularly symmetric over 4000-days after the explosion. The VLBI 4.8 and 8.4GHz images are used to derive a deceleration index, m, for SN 2008iz, of 0.86±0.02, and the average expansion velocity between days 73 and 1400 as (12.1±0.2)x103km/s. From the energy equipartition between magnetic field and particles, we estimate the minimum total energy in relativistic particles and the magnetic fields during the supernova expansion and also find the magnetic field amplification factor for SN 2008iz to be in the range of 55-400.

Abstract Copyright: © ESO, 2016

Journal keyword(s): radio continuum: galaxies - galaxies: individual: M 82 - supernovae: individual: SN 2008iz

VizieR on-line data: <Available at CDS (J/A+A/593/A18): list.dat fits/*>

Simbad objects: 14

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Number of rows : 14
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 3C 48 QSO 01 37 41.2996631208 +33 09 35.080388820   16.62 16.20     ~ 2815 2
2 SN 1986J SN* 02 22 31.33 +42 19 56.4   18.4 18.4     SNII 322 1
3 NAME M 81-82 Group GrG 09 55 +69.1           ~ 717 0
4 SN 1993J SN* 09 55 24.77476 +69 01 13.7026   10.8 12.0     SNIIb 1416 1
5 M 81 Sy2 09 55 33.1726556496 +69 03 55.062505368   7.89 6.94     ~ 4449 3
6 SN 2014J SN* 09 55 42.12 +69 40 25.9           SNIa-norm 409 1
7 SN 2008iz SN* 09 55 51.55 +69 40 45.8           SNII: 58 1
8 M 82 AGN 09 55 52.430 +69 40 46.93 9.61 9.30 8.41     ~ 5860 6
9 6C 104451+715930 QSO 10 48 27.61992778 +71 43 35.9384142     19.0 17.49   ~ 240 1
10 SN 1979C SN* 12 22 58.58 +15 47 52.7   11.6       SNIIL 584 1
11 SN 2001gd SN* 13 13 23.89 +36 38 17.7     16.5     SNIIb 60 1
12 IC 4553 SyG 15 34 57.22396 +23 30 11.6084   14.76 13.88     ~ 2961 4
13 M 10 GlC 16 57 09.05 -04 06 01.1     4.98     ~ 789 0
14 SN 2004et SN* 20 35 25.33 +60 07 17.7   12.88       SNIIP 489 1

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