SV* HV 12452 , the SIMBAD biblio

SV* HV 12452 , the SIMBAD biblio (34 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.25CEST02:21:24


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Title First 3 Authors
1979MNRAS.188..139M 71 156 Multicolour photoelectric photometry of Magellanic Cloud Cepheids. II. An analysis of BVRI observations in the LMC. MARTIN W.L., WARREN P.R. and FEAST M.W.
1987ApJ...321..162W 161 140 Distance moduli and structure of the Magellanic clouds from near-infrared photometry of classical Cepheids. WELCH D.L., McLAREN R.A., MADORE B.F., et al.
1989ApJ...346..629V 70 19 The zero point of the Cepheid period-luminosity relation in the 1.05 micron wave band. VISVANATHAN N.
1993MNRAS.263..921L 101 67 Visual and infrared extinction from Cepheid observations. LANEY C.D. and STOBIE R.S.
1994A&A...285..819D 118 15 Pulsational parallaxes and calibration of the cosmic distance scale by Cepheid variable stars. DI BENEDETTO G.P.
1994MNRAS.266..441L 170 158 Cepheid period-luminosity relations in K, H, J and V. LANEY C.D. and STOBIE R.S.
1998ApJ...496...17G 120 192 Cepheid period-radius and period-luminosity relations and the distance to the Large Magellanic Cloud. GIEREN W.P., FOUQUE P. and GOMEZ M.
2002ApJS..142...71S viz 15       D               616 36 The cepheid period-luminosity relation in the Large Magellanic Cloud. SEBO K.M., RAWSON D., MOULD J., et al.
2004A&A...424...43S 100 144 New period-luminosity and period-color relations of classical Cepheids. II. Cepheids in LMC. SANDAGE A., TAMMANN G.A. and REINDL B.
2004AJ....128.2239P viz 93 212 New cepheid period-luminosity relations for the Large Magellanic Cloud: 92 near-infrared light curves. PERSSON S.E., MADORE B.F., KRZEMINSKI W., et al.
2005A&A...429L..37R 44 45 The influence of chemical composition on the properties of Cepheid stars. I. Period-Luminosity relation vs. iron abundance. ROMANIELLO M., PRIMAS F., MOTTINI M., et al.
2008A&A...488..731R 16       D               2 77 189 The influence of chemical composition on the properties of Cepheid stars. II. The iron content. ROMANIELLO M., PRIMAS F., MOTTINI M., et al.
2008AcA....58..163S viz 15       D               1 3398 282 The Optical Gravitational Lensing Experiment. The OGLE-III catalog of variable stars. I. Classical Cepheids in the Large Magellanic Cloud. SOSZYNSKI I., POLESKI R., UDALSKI A., et al.
2008AcA....58..313P viz 15       D               1 2950 15 Period changes of LMC Cepheids in the OGLE and MACHO Data. POLESKI R.
2011A&A...534A..95S viz 16       D   O           2 43 108 Calibrating the Cepheid period-luminosity relation from the infrared surface brightness technique. II. The effect of metallicity and the distance to the LMC'. STORM J., GIEREN W., FOUQUE P., et al.
2011AJ....142..192F 115           X   F     2 44 52 The carnegie Hubble program. FREEDMAN W.L., MADORE B.F., SCOWCROFT V., et al.
2011ApJ...743...76S viz 15       D               1 91 47 The Carnegie Hubble Program: the Leavitt law at 3.6 µm and 4.5 µm in the Large Magellanic Cloud. SCOWCROFT V., FREEDMAN W.L., MADORE B.F., et al.
2012MNRAS.426.3148S 15       D               1 85 6 Binarity among Cepheids in the Magellanic Clouds. SZABADOS L. and NEHEZ D.
2013A&A...550A..70G viz 16       D               3 201 45 Baade-Wesselink distances to Galactic and Magellanic Cloud Cepheids and the effect of metallicity. GROENEWEGEN M.A.T.
2014A&A...566A..37G viz 16       D               1 601 158 On the fine structure of the Cepheid metallicity gradient in the Galactic thin disk. GENOVALI K., LEMASLE B., BONO G., et al.
2015MNRAS.447.3342B viz 16       D               5 2329 21 On the variation of Fourier parameters for Galactic and LMC Cepheids at optical, near-infrared and mid-infrared wavelengths. BHARDWAJ A., KANBUR S.M., SINGH H.P., et al.
2015AJ....149..117M viz 16       D               2 1486 89 Large Magellanic Cloud near-infrared synoptic survey. I. Cepheid variables and the calibration of the Leavitt Law. MACRI L.M., NGEOW C.-C., KANBUR S.M., et al.
2016MNRAS.459.1170S viz 16       D               1 219 6 The Carnegie Chicago Hubble Program: the mid-infrared colours of Cepheids and the effect of metallicity on the CO band-head at 4.6µm. SCOWCROFT V., SEIBERT M., FREEDMAN W.L., et al.
2016ApJ...832..176I viz 16       D               1 3931 41 The panchromatic view of the Magellanic Clouds from classical Cepheids. I. Distance, reddening, and geometry of the Large Magellanic Cloud disk. INNO L., BONO G., MATSUNAGA N., et al.
2017A&A...608A..18G 203         O X C       4 47 13 Observational calibration of the projection factor of Cepheids. IV. Period-projection factor relation of Galactic and Magellanic Cloud Cepheids. GALLENNE A., KERVELLA P., MERAND A., et al.
2015AcA....65..297S viz 16       D               1 9695 105 The OGLE Collection of Variable Stars. Classical Cepheids in the Magellanic System. SOSZYNSKI I., UDALSKI A., SZYMANSKI M.K., et al.
2019A&A...622A..63G 17       D               2 99 ~ The VMC Survey. XXXIII. The tip of the red giant branch in the Magellanic Clouds. GROENEWEGEN M.A.T., CIONI M.-R.L., GIRARDI L., et al.
2019MNRAS.485..961J viz 17       D               1 814 116 The ASAS-SN catalogue of variable stars III: variables in the southern TESS continuous viewing zone. JAYASINGHE T., STANEK K.Z., KOCHANEK C.S., et al.
2019ApJ...883...58D viz 17       D               1 1719 29 Into the darkness: classical and Type II Cepheids in the zona galactica incognita. DEKANY I., HAJDU G., GREBEL E.K., et al.
2020MNRAS.491.4752B viz 17       D               1 13884 ~ When a period is not a full stop: Light-curve structure reveals fundamental parameters of Cepheid and RR Lyrae stars. BELLINGER E.P., KANBUR S.M., BHARDWAJ A., et al.
2020AJ....160..120J viz 17       D               1 365761 238 APOGEE data and spectral analysis from SDSS Data Release 16: seven years of observations including first results from APOGEE-South. JONSSON H., HOLTZMAN J.A., ALLENDE PRIETO C., et al.
2020A&A...641A..71L 17       D               1 54 ~ Atmospheric parameters of Cepheids from flux ratios with ATHOS. I. The temperature scale. LEMASLE B., HANKE M., STORM J., et al.
2021MNRAS.500..817C viz 17       D               1 5050 ~ The mid-infrared Leavitt law for classical Cepheids in the Magellanic Clouds. CHOWN A.H., SCOWCROFT V. and WUYTS S.
2021ApJ...913...38B viz 17       D               1 2043 32 The influence of metallicity on the Leavitt law from geometrical distances of Milky Way and Magellanic Cloud Cepheids. BREUVAL L., KERVELLA P., WIELGORSKI P., et al.

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