SN 1999ej , the SIMBAD biblio

SN 1999ej , the SIMBAD biblio (68 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.18CEST23:34:01


Sort references on where and how often the object is cited
trying to find the most relevant references on this object.
More on score
Bibcode/DOI Score in Title|Abstract|
Keywords
in a table in teXt, Caption, ... Nb occurence Nb objects in ref Citations
(from ADS)
Title First 3 Authors
1999IAUC.7286Q...1F 72 T                   2 ~ Supernova 1999ej in NGC 495. FRIEDMAN A., KING J.Y., LI W.D., et al.
1999IAUC.7298R...1J 72 T                   2 ~ Supernova 1999ej in NGC 495. JHA S., CHALLIS P., GARNAVICH P., et al.
1999IAUC.7304S...1S 72 T                   8 ~ Supernovae 1999dq, 1999eh,
1999ej, 1999el.
SARNECZKY K., KISS L. and SZABO G.
2001ApJ...546..734L 100 186 A high intrinsic peculiarity rate among type Ia supernovae. LI W., FILIPPENKO A.V., TREFFERS R.R., et al.
2002PASP..114..820V viz 349 28 Classifications of the host galaxies of supernovae. VAN DEN BERGH S., LI W. and FILIPPENKO A.V.
2003ApJ...594....1T viz 1 439 1662 Cosmological results from high-z supernovae. TONRY J.L., SCHMIDT B.P., BARRIS B., et al.
2005ApJ...624..532R 249 75 Reddening, absorption, and decline rate corrections for a complete sample of type Ia supernovae leading to a fully corrected Hubble diagram to v < 30,000 km/s. REINDL B., TAMMANN G.A., SANDAGE A., et al.
2006AJ....131..527J viz 1 88 309 UBVRI light curves of 44 type Ia supernovae. JHA S., KIRSHNER R.P., CHALLIS P., et al.
2006ApJ...645..488W viz 15       D               222 53 Determination of the Hubble constant, the intrinsic scatter of luminosities of type Ia supernovae, and evidence for nonstandard dust in other galaxies. WANG X., WANG L., PAIN R., et al.
2006ApJ...647..501P 103 118 A new method to calibrate the magnitudes of type Ia supernovae at maximum light. PRIETO J.L., REST A. and SUNTZEFF N.B.
2007ApJ...659..122J viz 2 139 633 Improved distances to type Ia supernovae with multicolor light-curve shapes: MLCS2k2. JHA S., RIESS A.G. and KIRSHNER R.P.
2007ApJ...666.1024B 1 95 379 Determining the type, redshift, and age of a supernova spectrum. BLONDIN S. and TONRY J.L.
2008AJ....135.1598M viz 203       D     X C       5 83 121 Optical spectroscopy of type Ia supernovae. MATHESON T., KIRSHNER R.P., CHALLIS P., et al.
2008ApJ...680.1137R 15       D               1 48 82 Spectral identification of an ancient supernova using light echoes in the Large Magellanic Cloud. REST A., MATHESON T., BLONDIN S., et al.
2008A&A...487...19N 15       D               1 71 51 The colour-lightcurve shape relation of type Ia supernovae and the reddening law. NOBILI S. and GOOBAR A.
2008ApJ...682..724B 15       D               1 57 48 Time dilation in type Ia supernova spectra at high redshift. BLONDIN S., DAVIS T.M., KRISCIUNAS K., et al.
2008MNRAS.389.1577T viz 15       D               1 125 10 Light-curve studies of nearby Type Ia supernovae with a Multiband Stretch method. TAKANASHI N., DOI M. and YASUDA N.
2008ApJ...686..749K viz 16       D               1 420 1341 Improved cosmological constraints from new, old, and combined supernova data sets. KOWALSKI M., RUBIN D., ALDERING G., et al.
2009PASP..121..238B 114           X C       2 114 75 Comparative direct analysis of type Ia supernova spectra. V. Insights from a larger sample and quantitative subclassification. BRANCH D., DANG L.C. and BARON E.
2009ApJ...697..380W 77             C       1 58 151 The golden standard type Ia supernova 2005cf: observations from the ultraviolet to the near-infrared wavebands. WANG X., LI W., FILIPPENKO A.V., et al.
2009ApJ...699L.139W viz 15       D               1 163 243 Improved distances to type Ia supernovae with two spectroscopic subclasses. WANG X., FILIPPENKO A.V., GANESHALINGAM M., et al.
2009A&A...500L..17B viz 15       D               1 74 70 Using spectral flux ratios to standardize SN Ia luminosities. BAILEY S., ALDERING G., ANTILOGUS P., et al.
2009ApJ...700.1097H viz 15       D               3 509 790 Improved dark energy constraints from ∼100 new CfA supernova type Ia light curves. HICKEN M., WOOD-VASEY W.M., BLONDIN S., et al.
2010ApJ...711..711W 92       D         F     3 64 6 Quantifying spectral features of type Ia supernovae. WAGERS A., WANG L. and ASZTALOS S.
2008ChJAA...8...71W 38           X         1 23 22 Distribution of 56Ni Yields of Type Ia Supernovae and its Implication for Progenitors. WANG B., MENG X.-C., WANG X.-F., et al.
2010ApJ...716..712A viz 15       D               1 720 1196 Spectra and Hubble Space Telescope light curves of six type Ia supernovae at 0.511 < z < 1.12 and the Union2 compilation. AMANULLAH R., LIDMAN C., RUBIN D., et al.
2010ApJS..190..418G viz 244       D     X         7 334 202 Results of the Lick observatory supernova search follow-up photometry program: BVRI light curves of 165 type Ia supernovae. GANESHALINGAM M., LI W., FILIPPENKO A.V., et al.
2011MNRAS.410.1262W viz 92       D         F     2 124 42 Supernova Legacy Survey: using spectral signatures to improve Type Ia supernovae as distance indicators. WALKER E.S., HOOK I.M., SULLIVAN M., et al.
2011A&A...526A.119N 15       D               1 152 21 Spectral properties of type Ia supernovae up to z ∼ 0.3. NORDIN J., OESTMAN L., GOOBAR A., et al.
2011ApJ...732...30P 15       D               1 70 105 A study of carbon features in type Ia supernova spectra. PARRENT J.T., THOMAS R.C., FESEN R.A., et al.
2011MNRAS.412.1419L viz 15       D               1 1826 164 Nearby supernova rates from the Lick observatory supernova search – I. The methods and data base. LEAMAN J., LI W., CHORNOCK R., et al.
2011MNRAS.412.1441L viz 15       D               2 433 631 Nearby supernova rates from the Lick observatory supernova search – II. The observed luminosity functions and fractions of supernovae in a complete sample. LI W., LEAMAN J., CHORNOCK R., et al.
2011ApJ...734...42N 15       D               1 57 25 Evidence for a correlation between the Si II λ4000 width and type Ia supernova color. NORDIN J., OSTMAN L., GOOBAR A., et al.
2011MNRAS.414.1617A viz 15       D               1 76 2 A new insight into the classification of type Ia supernovae. ARSENIJEVIC V.
2011ApJ...742...89F viz 15       D               2 276 69 Velocity evolution and the intrinsic color of type Ia supernovae. FOLEY R.J., SANDERS N.E. and KIRSHNER R.P.
2012A&A...538A.120L viz 15       D               1 5598 37 A unified supernova catalogue. LENNARZ D., ALTMANN D. and WIEBUSCH C.
2012ApJ...749..174C 190 23 Cosmicflows-2: type Ia supernova calibration and H0. COURTOIS H.M. and TULLY R.B.
2012AJ....143..126B viz 15       D               2 532 244 The spectroscopic diversity of type Ia supernovae. BLONDIN S., MATHESON T., KIRSHNER R.P., et al.
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.
2012A&A...545A..58S 867       D   O X C F     21 21 20 Type Ia supernova host galaxies as seen with IFU spectroscopy. STANISHEV V., RODRIGUES M., MOURAO A., et al.
2013Sci...340..170W viz 16       D               1 378 132 Evidence for two distinct populations of type Ia supernovae. WANG X., WANG L., FILIPPENKO A.V., et al.
2013MNRAS.433.2240G viz 16       D               2 597 70 Constraints on dark energy with the LOSS SN Ia sample. GANESHALINGAM M., LI W. and FILIPPENKO A.V.
2014ApJ...795..142G viz 16       D               1 448 7 Defining photometric peculiar type Ia supernovae. GONZALEZ-GAITAN S., HSIAO E.Y., PIGNATA G., et al.
2014A&A...572A..38G 16       D   O           1 176 95 Nearby supernova host galaxies from the CALIFA Survey. I. Sample, data analysis, and correlation to star-forming regions. GALBANY L., STANISHEV V., MOURAO A.M., et al.
2015ApJ...812...31J viz 16       D               1 337 27 Reconsidering the effects of local star formation on type Ia supernova cosmology. JONES D.O., RIESS A.G. and SCOLNIC D.M.
2016MNRAS.456.2848H viz 16       D               1 919 37 Supernovae and their host galaxies - III. The impact of bars and bulges on the radial distribution of supernovae in disc galaxies. HAKOBYAN A.A., KARAPETYAN A.G., BARKHUDARYAN L.V., et al.
2016A&A...591A..48G 16       D               1 271 66 Nearby supernova host galaxies from the CALIFA survey. II. Supernova environmental metallicity. GALBANY L., STANISHEV V., MOURAO A.M., et al.
2017PASP..129e4201S 16       D               1 215 111 Revisiting the Lick Observatory Supernova Search volume-limited sample: updated classifications and revised stripped-envelope Supernova fractions. SHIVVERS I., MODJAZ M., ZHENG W., et al.
2018ApJ...855..107G viz 16       D               1 285 86 PISCO: the PMAS/PPak Integral-field Supernova hosts COmpilation. GALBANY L., ANDERSON J.P., SANCHEZ S.F., et al.
2018ApJ...857..110H 41           X         1 16 2 Characterization of Type Ia supernova light curves using principal component analysis of sparse functional data. HE S., WANG L. and HUANG J.Z.
2018ApJ...859..101S viz 17       D               1 1047 1682 The complete light-curve sample of spectroscopically confirmed SNe Ia from Pan-STARRS1 and cosmological constraints from the combined Pantheon Sample. SCOLNIC D.M., JONES D.O., REST A., et al.
2018ApJ...867..108J viz 16       D               1 274 106 Should Type Ia supernova distances be corrected for their local environments? JONES D.O., RIESS A.G., SCOLNIC D.M., et al.
2019ApJ...882..120W viz 17       D               1 210 5 The cold and dusty circumstellar matter around fast-expanding Type Ia supernovae. WANG X., CHEN J., WANG L., et al.
2020ApJ...889....8K 17       D               4 104 63 Early-type host galaxies of Type Ia supernovae. II. Evidence for luminosity evolution in supernova cosmology. KANG Y., LEE Y.-W., KIM Y.-L., et al.
2020ApJ...896L...4R viz 17       D               1 259 ~ Evidence for cosmic acceleration is robust to observed correlations between Type Ia supernova luminosity and stellar age. ROSE B.M., RUBIN D., CIKOTA A., et al.
2020MNRAS.496.3553S 17       D               1 202 ~ deepSIP: linking Type Ia supernova spectra to photometric quantities with deep learning. STAHL B.E., MARTINEZ-PALOMERA J., ZHENG W., et al.
2020MNRAS.498.2703B viz 17       D               1 474 54 Cosmic flows in the nearby Universe: new peculiar velocities from SNe and cosmological constraints. BORUAH S.S., HUDSON M.J. and LAVAUX G.
2020ApJ...902...14S viz 17       D               1 1047 22 Effects of supernova redshift uncertainties on the determination of cosmological parameters. STEINHARDT C.L., SNEPPEN A. and SEN B.
2020MNRAS.499.1424H viz 17       D               1 408 ~ Supernovae and their host galaxies - VII. The diversity of Type Ia supernova progenitors. HAKOBYAN A.A., BARKHUDARYAN L.V., KARAPETYAN A.G., et al.
2020MNRAS.499.5121P 17       D               1 631 16 The dependence of Type Ia Supernovae SALT2 light-curve parameters on host galaxy morphology. PRUZHINSKAYA M.V., NOVINSKAYA A.K., PAUNA N., et al.
2021MNRAS.505L..52H viz 17       D               1 189 ~ Type Ia supernovae in the star formation deserts of spiral host galaxies. HAKOBYAN A.A., KARAPETYAN A.G., BARKHUDARYAN L.V., et al.
2021PASJ...73..326A 17       D               3 138 ~ Intrinsic color diversity of nearby Type Ia supernovae. ARIMA N., DOI M., MOROKUMA T., et al.
2021ApJ...923..267D viz 17       D               2 379 11 The Foundation Supernova Survey: photospheric velocity correlations in Type Ia supernovae. DETTMAN K.G., JHA S.W., DAI M., et al.
2022MNRAS.510.4779S 18       D               2 445 ~ Type Ia supernova magnitude step from the local dark matter environment. STEIGERWALD H., RODRIGUES D., PROFUMO S., et al.
2022ApJ...925..115H viz 18       D               1 420 ~ The Dependence of the Type Ia Supernova Host Bias on Observation or Fitting Technique. HAND J., LIU S., GALBANY L., et al.
2022MNRAS.517L.132K viz 18       D               1 79 2 Constraining Type Ia supernovae via their distances from spiral arms. KARAPETYAN A.G.
2022A&A...668A..34H viz 18       D               1 1045 24 Inference of the cosmic rest-frame from supernovae Ia. HORSTMANN N., PIETSCHKE Y. and SCHWARZ D.J.
2023ApJ...953...35G 19       D               1 64 ~ Connecting Infrared Surface Brightness Fluctuation Distances to Type Ia Supernova Hosts: Testing the Top Rung of the Distance Ladder. GARNAVICH P., WOOD C.M., MILNE P., et al.

goto View the references in ADS