SN 2005K , the SIMBAD biblio

SN 2005K , the SIMBAD biblio (19 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.24CEST09:53:51


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Title First 3 Authors
2005IAUC.8468....1T 74 T                   2 0
Supernova 2005K in NGC 2923.
TRONDAL O. and SCHWARTZ M.
2005IAUC.8470....2M 74 T                   2 1 Supernovae 2005J and 2005K. MODJAZ M., KIRSHNER R., CHALLIS P., et al.
2009MNRAS.399..559A 15       D               1 322 72 Comparisons of the radial distributions of core-collapse supernovae with those of young and old stellar populations. ANDERSON J.P. and JAMES P.A.
2012A&A...538A.120L viz 15       D               1 5598 37 A unified supernova catalogue. LENNARZ D., ALTMANN D. and WIEBUSCH C.
2012A&A...544A..81H viz 15       D               1 7232 67 Supernovae and their host galaxies. I. The SDSS DR8 database and statistics. HAKOBYAN A.A., ADIBEKYAN V.Zh., ARAMYAN L.S., et al.
2014ApJ...786...67A 16       D               3 234 250 Characterizing the V-band light-curves of hydrogen-rich type II supernovae. ANDERSON J.P., GONZALEZ-GAITAN S., HAMUY M., et al.
2016A&A...589A.110A viz 16       D               2 217 17 Type II supernovae as probes of environment metallicity: observations of host H II regions. ANDERSON J.P., GUTIERREZ C.P., DESSART L., et al.
2016MNRAS.459.3939V viz 17       D               1 210 225 The diversity of Type II supernova versus the similarity in their progenitors. VALENTI S., HOWELL D.A., STRITZINGER M.D., et al.
2017ApJ...835..166D viz 16       D               1 89 18 A Type II supernova Hubble diagram from the CSP-I, SDSS-II, and SNLS surveys. DE JAEGER T., GONZALEZ-GAITAN S., HAMUY M., et al.
2017ApJ...850...89G 16       D               1 252 84 Type II supernova spectral diversity. I. Observations, sample characterization, and spectral line evolution. GUTIERREZ C.P., ANDERSON J.P., HAMUY M., et al.
2017ApJ...850...90G 57       D     X         2 124 51 Type II supernova spectral diversity. II. Spectroscopic and photometric correlations. GUTIERREZ C.P., ANDERSON J.P., HAMUY M., et al.
2017MNRAS.472.4233D 16       D               1 64 14 SN 2016jhj at redshift 0.34: extending the Type II supernova Hubble diagram using the standard candle method. DE JAEGER T., GALBANY L., FILIPPENKO A.V., et al.
2018MNRAS.476.4592D 16       D               1 75 11 Observed Type II supernova colours from the Carnegie Supernova Project-I. DE JAEGER T., ANDERSON J.P., GALBANY L., et al.
2018MNRAS.479.3232G 16       D               3 254 15 Type II supernovae in low-luminosity host galaxies. GUTIERREZ C.P., ANDERSON J.P., SULLIVAN M., et al.
2018MNRAS.481..566K viz 16       D               1 365 4 The impact of spiral density waves on the distribution of supernovae. KARAPETYAN A.G., HAKOBYAN A.A., BARKHUDARYAN L.V., et al.
2019MNRAS.488.4239P viz 17       D               2 106 19 Comparison of the optical light curves of hydrogen-rich and hydrogen-poor type II supernovae. PESSI P.J., FOLATELLI G., ANDERSON J.P., et al.
2020MNRAS.495.4860D viz 17       D               1 111 ~ Studying Type II supernovae as cosmological standard candles using the Dark Energy Survey. DE JAEGER T., GALBANY L., GONZALEZ-GAITAN S., et al.
2022A&A...660A..40M 18       D               2 147 6 Type II supernovae from the Carnegie Supernova Project-I. I. Bolometric light curves of 74 SNe II using uBgVriYJH photometry. MARTINEZ L., BERSTEN M.C., ANDERSON J.P., et al.
2022A&A...660A..41M 45           X         1 86 16 Type II supernovae from the Carnegie Supernova Project-I. II. Physical parameter distributions from hydrodynamical modelling. MARTINEZ L., BERSTEN M.C., ANDERSON J.P., et al.

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