2019MNRAS.484.2587M


Query : 2019MNRAS.484.2587M

2019MNRAS.484.2587M - Mon. Not. R. Astron. Soc., 484, 2587-2604 (2019/April-1)

Supernova dust yields: the role of metallicity, rotation, and fallback.

MARASSI S., SCHNEIDER R., LIMONGI M., CHIEFFI A., GRAZIANI L. and BIANCHI S.

Abstract (from CDS):

Supernovae (SNe) are considered to have a major role in dust enrichment of high-redshift galaxies and, due to the short lifetimes of interstellar grains, in dust replenishment of local galaxies. Here we explore how SN dust yields depend on the mass, metallicity, and rotation rate of the progenitor stars, and on the properties of the explosion. To this aim, assuming uniform mixing inside the ejecta, we quantify the dust mass produced by a sample of SN models with progenitor masses 13 M ≤M ≤120 M, metallicity -3 ≤[Fe/H] ≤0, rotation rate v_ rot_ = 0, and 300 km s–1, that explode with a fixed energy of 1.2 x 1051 erg (FE models) or with explosion properties calibrated to reproduce the 56Ni-M relation inferred from SN observations (CE models). We find that rotation favours more efficient dust production, particularly for more massive, low-metallicity stars, but that metallicity and explosion properties have the largest effects on the dust mass and its composition. In FE models, SNe with M ≤20-25 M are more efficient at forming dust: between 0.1 and 1 M is formed in a single explosion, with a composition dominated by silicates, carbon, and magnetite grains when [Fe/H] = 0, and by carbon and magnetite grains when [Fe/H] < 0. In CE models, the ejecta are massive and metal-rich and dust production is more efficient. The dust mass increases with M and it is dominated by silicates, at all [Fe/H].

Abstract Copyright: © 2018 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Society

Journal keyword(s): stars: abundances - stars: evolution - supernovae: general - ISM: abundances - dust, extinction - galaxies: ISM

Simbad objects: 20

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Number of rows : 20
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 NAME SMC G 00 52 38.0 -72 48 01   2.79 2.2     ~ 11151 1
2 SN 2002ap SN* 01 36 23.85 +15 45 13.2   13.11 14.54     SNIc-BL 564 1
3 SN 2007gr SN* 02 43 27.98 +37 20 44.7       12.77   SNIc 236 1
4 SN 2006aj SN* 03 21 39.670 +16 52 02.27 17.96 19.11 17.40     SNIc-BL 940 1
5 SN 2003bg SN* 04 10 59.43 -31 24 50.4     15.0     SNIc 154 1
6 SN 1997D SN* 04 11 01.00 -56 29 56.0       16.3   SNIIpec 175 1
7 NAME LMC G 05 23 34.6 -69 45 22     0.4     ~ 17438 0
8 SN 1987A SN* 05 35 28.020 -69 16 11.07           SNIIpec 4939 2
9 SN 1997ef SN* 07 57 02.87 +49 33 41.3     16.5     SNIc-BL 270 1
10 SN 2003lw SN* 08 02 30.1 -39 51 03       20.23   SNIc: 548 0
11 SN 2008D SN* 09 09 30.625 +33 08 20.16     17.5     SNIb 405 1
12 SN 1993J SN* 09 55 24.77476 +69 01 13.7026   10.8 12.0     SNIIb 1418 1
13 SN 2005bf SN* 10 23 56.99 -03 11 29.3     18.0     SNIb 204 1
14 SN 2003dh SN* 10 44 50.030 +21 31 18.15     16.2     SNIcpec 1209 1
15 SN 1999br SN* 13 00 41.80 +02 29 45.8     17.5     SNIIPp 165 1
16 SN 1994I SN* 13 29 54.072 +47 11 30.50     12.9     SNIc 625 1
17 SNR G054.1+00.3 SNR 19 30 10.6 +18 50 22           ~ 238 1
18 SN 1998bw SN* 19 35 03.17 -52 50 46.1   14.09       SNIc 1823 2
19 SN 1980K SN* 20 35 30.07 +60 06 23.7   11.6       SNIIL 464 1
20 3C 461 BL? 23 23 24.000 +58 48 54.00     14.30     ~ 2792 1

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