SHV 0523185-693932 , the SIMBAD biblio

SHV 0523185-693932 , the SIMBAD biblio (16 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.19CEST17:44:16


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
1989AJ.....97.1634H 1185 65 Long-period variables in the Large Magellanic Cloud. I. Search and discovery. HUGHES S.M.G.
2000A&AS..145...11M viz 634 8 AGAPEROS: Searching for variable stars in the LMC Bar with the Pixel Method. I. Detection, astrometry and cross-identification. MELCHIOR A.-L., HUGHES S.M.G. and GUIBERT J.
2004A&A...425..595G viz 2919 66 Long Period Variables in the Magellanic Clouds: OGLE + 2MASS + DENIS. GROENEWEGEN M.A.T.
2008AJ....136.1242F viz 15       D               1 47759 44 The properties of long-period variables in the Large Magellanic Cloud from MACHO. FRASER O.J., HAWLEY S.L. and COOK K.H.
2009AcA....59..239S viz 15       D               1 46478 185 The Optical Gravitational Lensing Experiment. The OGLE-III catalog of variable stars. IV. Long-period variables in the Large Magellanic Cloud. SOSZYNSKI I., UDALSKI A., SZYMANSKI M.K., et al.
2010PASP..122..683K viz 15       D               1 238 89 The SAGE-Spec Spitzer Legacy program: the life cycle of dust and gas in the Large Magellanic Cloud. KEMPER F., WOODS P.M., ANTONIOU V., et al.
2011MNRAS.411.1597W viz 92       D     X         3 230 107 The SAGE-Spec Spitzer Legacy programme: the life-cycle of dust and gas in the Large Magellanic Cloud – point source classification I. WOODS P.M., OLIVEIRA J.M., KEMPER F., et al.
2011A&A...530A..90V viz 15       D               1 1414 46 The optically bright post-AGB population of the LMC. VAN AARLE E., VAN WINCKEL H., LLOYD EVANS T., et al.
2014MNRAS.440..631J viz 16       D               1 151 22 Modelling the alumina abundance of oxygen-rich evolved stars in the Large Magellanic Cloud. JONES O.C., KEMPER F., SRINIVASAN S., et al.
2015MNRAS.454.1468K viz 16       D               2 2116 79 Optically visible post-AGB stars, post-RGB stars and young stellar objects in the Large Magellanic Cloud. KAMATH D., WOOD P.R. and VAN WINCKEL H.
2016AJ....152..164H viz 16       D               1 887 7 Period estimation for sparsely-sampled quasi-periodic light curves applied to Miras. HE S., YUAN W., HUANG J.Z., et al.
2017AJ....154..149Y viz 16       D               1 692 33 Large Magellanic Cloud near-infrared synoptic survey. V. Period-Luminosity relations of Miras. YUAN W., MACRI L.M., HE S., et al.
2018A&A...609A.114G viz 16       D               1 408 55 Luminosities and mass-loss rates of Local Group AGB stars and red supergiants. GROENEWEGEN M.A.T. and SLOAN G.C.
2019ApJ...884...20B viz 17       D               1 1729 ~ Multiwavelength period-luminosity and period-luminosity-color relations at maximum light for Mira variables in the Magellanic Clouds. BHARDWAJ A., KANBUR S., HE S., et al.
2021ApJ...919...99I viz 17       D               1 1667 10 Mid-infrared period-luminosity relations for Miras in the Large Magellanic Cloud. IWANEK P., SOSZYNSKI I. and KOZLOWSKI S.
2021A&A...656A..66T viz 17       D               1 14341 8 Semi-regular red giants as distance indicators. I. The period-luminosity relations of semi-regular variables revisited. TRABUCCHI M., MOWLAVI N. and LEBZELTER T.

goto View the references in ADS