QSO B1243+3047 , the SIMBAD biblio

QSO B1243+3047 , the SIMBAD biblio (38 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.05.08CEST16:41:44


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Title First 3 Authors
1984ApJS...55..517S 330 41 The Case low-dispersion northern sky survey. II. SANDULEAK N. and PESCH P.
1995PASP..107.1059E 124 5 Hot subluminous stars and blue objects in the case low-dispersion northern sky survey. II. Quasar candidates. EVERETT M.E. and WAGNER R.M.
2001AJ....121.2843B viz 6250 77 Quasars in the 2MASS second incremental data release. BARKHOUSE W.A. and HALL P.B.
2003ApJ...599..297H 31 68 The deuterium-to-oxygen ratio in the interstellar medium. HEBRARD G. and MOOS H.W.
2003ApJS..148..175S 204 16 9815 First-year Wilkinson microwave anisotropy probe (WMAP)(1) observations: determination of cosmological parameters. SPERGEL D.N., VERDE L., PEIRIS H.V., et al.
2003ApJS..149....1K 129 T K                 7 402 The cosmological baryon density from the Deuterium-to-Hydrogen ratio in QSO absorption systems: D/H toward Q1243+3047. KIRKMAN D., TYTLER D., SUZUKI N., et al.
2003PASP..115.1050S 39   K                 3 24 Relative flux calibration of Keck HIRES echelle spectra. SUZUKI N., TYTLER D., KIRKMAN D., et al.
2004ApJ...617...29O 3 21 207 A realistic determination of the error on the primordial helium abundance: steps toward nonparametric nebular helium abundances. OLIVE K.A. and SKILLMAN E.D.
2004ApJS..150..387S 24 67 The Deuterium-to-Hydrogen ratio in a low-metallicity cloud falling onto the Milky Way. SEMBACH K.R., WAKKER B.P., TRIPP T.M., et al.
2004MNRAS.355.1042C 1 11 47 Deuterium/hydrogen in a new Lyman limit absorption system at z= 3.256 towards PKS1937-1009. CRIGHTON N.H.M., WEBB J.K., ORTIZ-GIL A., et al.
2005ApJ...619..657P 29 18 Complementary constraints from Fanaroff-Riley type IIb radio galaxies and X-ray gas mass fractions in clusters on nonstandard cosmological models. PUETZFELD D., POHL M. and ZHU Z.-H.
2005MNRAS.360.1373K 1 24 72 The HI opacity of the intergalactic medium at redshifts 1.6 < z < 3.2. KIRKMAN D., TYTLER D., SUZUKI N., et al.
2006A&A...455..773V viz 108224 628 A catalogue of quasars and active nuclei: 12th edition. VERON-CETTY M.-P. and VERON P.
2006ApJ...642..283O 53 17 Variations in D/H and D/O from new far ultraviolet spectroscopic explorer observations. OLIVEIRA C.M., MOOS H.W., CHAYER P., et al.
2006ApJ...647L..33N 14 20 Spitzer observations of hydrogen deuteride. NEUFELD D.A., GREEN J.D., HOLLENBACH D.J., et al.
2006ApJS..163..110S 55 18 Quasar spectrum classification with principal component analysis (PCA): emission lines in the Lyα forest. SUZUKI N.
2006MNRAS.369..295R 2 11 46 Deuterium astration in the local disc and beyond. ROMANO D., TOSI M., CHIAPPINI C., et al.
2006ApJ...652..354H 10 9 The Magellanic Stream in modified Newtonian dynamics. HAGHI H., RAHVAR S. and HASANI-ZONOOZ A.
2008MNRAS.391.1499P 27       D               1 7 178 Deuterium abundance in the most metal-poor damped Lyman alpha system: converging on Ωb,0h2. PETTINI M., ZYCH B.J., MURPHY M.T., et al.
2010A&A...518A..10V viz 15       D               1 168913 597 A catalogue of quasars and active nuclei: 13th edition. VERON-CETTY M.-P. and VERON P.
2010MNRAS.404.1583I 16       D               1 10 39 HD molecules at high redshift: the absorption system at z = 2.3377 towards Q 1232+082. IVANCHIK A.V., PETITJEAN P., BALASHEV S.A., et al.
2009PhR...472....1I 199           X C       4 19 401 Primordial nucleosynthesis: from precision cosmology to fundamental physics. IOCCO F., MANGANO G., MIELE G., et al.
2012MNRAS.425.2477P 22       D               1 10 140 A new, precise measurement of the primordial abundance of deuterium. PETTINI M. and COOKE R.
2011Sci...334.1245F 8 9 153 Detection of pristine gas two billion years after the Big Bang. FUMAGALLI M., O'MEARA J.M. and PROCHASKA J.X.
2014ApJ...788..119L viz 213       D     X         6 28 94 Galactic and circumgalactic O VI and its impact on the cosmological metal and baryon budgets at 2 < z ≲ 3.5. LEHNER N., O'MEARA J.M., FOX A.J., et al.
2015AJ....150..111O viz 16       D               1 171 71 The first data release of the KODIAQ survey. O'MEARA J.M., LEHNER N., HOWK J.C., et al.
2016MNRAS.458.2188B 17       D               1 15 18 The primordial deuterium abundance: subDLA system at zabs = 2.437 towards the QSO J 1444+2919. BALASHEV S.A., ZAVARYGIN E.O., IVANCHIK A.V., et al.
2017AJ....154..114O viz 16       D               3 298 26 The second data release of the KODIAQ survey. O'MEARA J.M., LEHNER N., HOWK J.C., et al.
2017ApJ...851...13S 164       S   X         3 6 13 The Extremely Luminous Quasar Survey in the SDSS footprint. I. Infrared-based candidate selection. SCHINDLER J.-T., FAN X., McGREER I.D., et al.
2018ApJ...855..102C 663   K A D     X C       15 7 322 One percent determination of the primordial deuterium abundance. COOKE R.J., PETTINI M. and STEIDEL C.C.
2018MNRAS.477.5536Z 16       D               1 14 12 The primordial deuterium abundance at zabs = 2.504 from a high signal-to-noise spectrum of Q1009+2956. ZAVARYGIN E.O., WEBB J.K., DUMONT V., et al.
2019ApJS..240....6Y viz 17       D               1 18579 35 The Large Sky Area Multi-Object Fiber Spectroscopic Telescope (LAMOST) quasar survey: the fourth and fifth Data Releases. YAO S., WU X.-B., AI Y.L., et al.
2018PASP..130k4001P 16       D               1 15 ~ Median statistics analysis of deuterium abundance measurements and spatial curvature constraints. PENTON J., PEYTON J., ZAHOOR A., et al.
2019ApJ...882...77C 17       D               1 73 40 Heavy element absorption systems at 5.0 < z < 6.8: metal-poor neutral gas and a diminishing signature of highly ionized circumgalactic matter. COOPER T.J., SIMCOE R.A., COOKSEY K.L., et al.
2019MNRAS.489.2536D 17       D               1 66 ~ Power spectrum of the flux in the Lyman-alpha forest from high-resolution spectra of 87 QSOs. DAY A., TYTLER D. and KAMBALUR B.
2019ApJ...887..205T 17       D               1 47 ~ Thermal state of the intergalactic medium at z ∼ 2-4. TELIKOVA K.N., SHTERNIN P.S. and BALASHEV S.A.
2021AJ....161...45O viz 17       D               1 727 ~ The third data release of the KODIAQ survey. O'MEARA J.M., LEHNER N., HOWK J.C., et al.
2021A&A...651A..78N 17       D               1 12 9 Sharpening quasar absorption lines with ESPRESSO. Temperature of warm gas at z ∼ 2, constraints on the Mg isotopic ratio, and structure of cold gas at z ∼ 0.5. NOTERDAEME P., BALASHEV S., LEDOUX C., et al.

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