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NAME Leo IV Dwarf Galaxy , the SIMBAD biblio (297 results) | C.D.S. - SIMBAD4 rel 1.7 - 2019.12.15CET22:45:04 |
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 |
---|---|---|---|---|---|---|---|---|---|
2019A&A...631A..43M ![]() |
93 | C | 1 | 10 | ~ | Influence of inelastic collisions with hydrogen atoms on the non-local thermodynamic equilibrium line formation for Fe I and Fe II in the 1D model atmospheres of late-type stars. | MASHONKINA L., SITNOVA T., YAKOVLEVA S.A., et al. | ||
2019AJ....157...35V ![]() |
65 | D | X | 2 | 16 | ~ | The population of pulsating variable stars in the Sextans dwarf spheroidal galaxy. | VIVAS A.K., ALONSO-GARCIA J., MATEO M., et al. | |
2019ApJ...870...83J | 47 | X | 1 | 32 | ~ | Chemical abundances in the ultra-faint dwarf galaxies Grus I and Triangulum II: neutron-capture elements as a defining feature of the faintest dwarfs. | JI A.P., SIMON J.D., FREBEL A., et al. | ||
2019ApJ...871..247B | 47 | X | 1 | 21 | ~ | The origin of r-process enhanced metal-poor halo stars in now-destroyed ultra-faint dwarf galaxies. | BRAUER K., JI A.P., FREBEL A., et al. | ||
2019ApJ...873...34N | 47 | X | 1 | 33 | ~ | Modeling the connection between subhalos and satellites in Milky Way-like systems. | NADLER E.O., MAO Y.-Y., GREEN G.M., et al. | ||
2019ApJ...874...29M | 19 | D | 1 | 78 | ~ | A MegaCAM survey of outer halo satellites. VII. A single Sersic index versus effective radius relation for Milky Way outer halo satellites. | MARCHI-LASCH S., MUNOZ R.R., SANTANA F.A., et al. | ||
2019ApJ...875..120J | 93 | C | 1 | 27 | ~ | RR Lyrae stars in the field of Sagittarius II. | JOO S.-J., KYEONG J., YANG S.-C., et al. | ||
2019ApJ...877L..27S | 93 | X | 2 | 6 | ~ | An upper limit on primordial magnetic fields from ultra-faint dwarf galaxies. | SAFARZADEH M. and LOEB A. | ||
2019ApJ...881..164Y | 47 | X | 1 | 18 | ~ | Revealing the complicated story of the Cetus Stream with StarGO. | YUAN Z., SMITH M.C., XUE X.-X., et al. | ||
2019ApJ...882..177M | 93 | C | 1 | 25 | ~ | Chemical abundance analysis of Tucana III, the second r-process enhanced ultra-faint dwarf galaxy. | MARSHALL J.L., HANSEN T., SIMON J.D., et al. | ||
2019ApJ...883...84R | 47 | X | 1 | 49 | ~ | High-resolution optical spectroscopy of stars in the Sylgr stellar stream. | ROEDERER I.U. and GNEDIN O.Y. | ||
2019ApJ...883..171H | 19 | D | 2 | 54 | ~ | On the absence of dark matter in dwarf galaxies surrounding the Milky Way. | HAMMER F., YANG Y., WANG J., et al. | ||
2019MNRAS.482.3480P | 299 | D | X C | 6 | 60 | ~ | Scaling relations for dark matter annihilation and decay profiles in dwarf spheroidal galaxies. | PACE A.B. and STRIGARI L.E. | |
2019MNRAS.483.1314B | 19 | D | 1 | 82 | ~ | NIHAO XV: the environmental impact of the host galaxy on galactic satellite and field dwarf galaxies. | BUCK T., MACCIO A.V., DUTTON A.A., et al. | ||
2019MNRAS.483.4031W | 93 | F | 1 | 43 | ~ | The suppression of star formation on the smallest scales: what role does environment play? | WIMBERLY M.K.R., COOPER M.C., FILLINGHAM S.P., et al. | ||
2019MNRAS.485.5423D | 19 | D | 1 | 105 | ~ | The star formation histories of dwarf galaxies in Local Group cosmological simulations. | DIGBY R., NAVARRO J.F., FATTAHI A., et al. | ||
2019MNRAS.486.1964I | 205 | D | X F | 4 | 65 | ~ | Denuded dwarfs demystified: gas loss from dSph progenitors and implications for the minimum mass of galaxies. | IVKOVICH N. and McCALL M.L. | |
2019MNRAS.486.2679R | 112 | D | C | 3 | 46 | ~ | The velocity anisotropy of the Milky Way satellite system. | RILEY A.H., FATTAHI A., PACE A.B., et al. | |
2019MNRAS.486.5567R | 205 | D | X | 5 | 13 | ~ | Parameter estimation for scarce stellar populations. | RAMIREZ-SIORDIA V.H., BRUZUAL G., CERVANTES SODI B., et al. | |
2019MNRAS.487.5799R | 327 | X F | 6 | 35 | ~ | Abundance matching with the mean star formation rate: there is no missing satellites problem in the Milky Way above M200 ∼ 109 M☉. | READ J.I. and ERKAL D. | ||
2019PASP..131i4502F | 47 | X | 1 | 17 | ~ | Eleanor: an open-source tool for extracting light curves from the TESS full-frame images. | FEINSTEIN A.D., MONTET B.T., FOREMAN-MACKEY D., et al. | ||
2018A&A...609A..11K | 18 | D | 1 | 229 | 3 | Cosmic flow around local massive galaxies. | KASHIBADZE O.G. and KARACHENTSEV I.D. | ||
2018A&A...611A..81M | 134 | X | 3 | 24 | ~ | Bose-Einstein condensate haloes embedded in dark energy. | MEMBRADO M. and PACHECO A.F. | ||
2018A&A...619A.103F | 18 | D | X | 1 | 56 | ~ | Gaia DR2 proper motions of dwarf galaxies within 420 kpc. Orbits, Milky Way mass, tidal influences, planar alignments, and group infall. | FRITZ T.K., BATTAGLIA G., PAWLOWSKI M.S., et al. | |
2018A&A...620A.127M ![]() |
45 | X | 1 | 41 | ~ | Gaia Data Release 2. Validating the classification of RR Lyrae and Cepheid variables with the Kepler and K2 missions. | MOLNAR L., PLACHY E., JUHASZ A.L., et al. | ||
2018ApJ...852...99N ![]() |
90 | C | 1 | 28 | 4 | Chemical abundance analysis of three α-poor, metal-poor stars in the ultrafaint dwarf galaxy Horologium I. | NAGASAWA D.Q., MARSHALL J.L., LI T.S., et al. | ||
2018ApJ...853...60W | 45 | X | 1 | 25 | ~ | Gas expulsion in MOND: the possible origin of diffuse globular clusters and ultra-faint dwarf galaxies. | WU X. and KROUPA P. | ||
2018ApJ...853..154A | 109 | D | X | 3 | 16 | 21 | Dark matter limits from dwarf spheroidal galaxies with the HAWC gamma-ray observatory. | ALBERT A., ALFARO R., ALVAREZ C., et al. | |
2018ApJ...855...20G | 986 | A | D | X C | 22 | 9 | 7 | Evidence of a non-universal stellar initial mass function. Insights from HST optical imaging of six ultra-faint dwarf Milky Way satellites. | GENNARO M., TCHERNYSHYOV K., BROWN T.M., et al. |
2018ApJ...855...43M ![]() |
744 | A | S X C | 15 | 183 | 6 | Discovery of distant RR Lyrae stars in the Milky Way using DECam. | MEDINA G.E., MUNOZ R.R., VIVAS A.K., et al. | |
2018ApJ...857...74C ![]() |
45 | X | 1 | 18 | 3 | Chemical abundances of new member stars in the Tucana II dwarf galaxy. | CHITI A., FREBEL A., JI A.P., et al. | ||
2018ApJ...857..145L ![]() |
45 | X | 1 | 19 | 12 | Ships passing in the night: spectroscopic analysis of two ultra-faint satellites in the constellation Carina. | LI T.S., SIMON J.D., PACE A.B., et al. | ||
2018ApJ...860...65M ![]() |
242 | D | X C | 5 | 66 | 1 | A MegaCAM Survey of outer halo satellites. I. Description of the Survey. | MUNOZ R.R., COTE P., SANTANA F.A., et al. | |
2018ApJ...860...66M | 824 | D | S X C | 17 | 94 | 3 | A MegaCAM survey of outer halo satellites. III. Photometric and structural parameters. | MUNOZ R.R., COTE P., SANTANA F.A., et al. | |
2018ApJ...860...76H | 18 | D | 1 | 32 | ~ | Galactic forces rule the dynamics of Milky Way dwarf galaxies. | HAMMER F., YANG Y., ARENOU F., et al. | ||
2018ApJ...861...23J ![]() |
45 | X | 1 | 18 | 2 | RR Lyrae variables in the Crater II dwarf galaxy. | JOO S.-J., KYEONG J., YANG S.-C., et al. | ||
2018ApJ...863...38G | 224 | X | 5 | 12 | ~ | The initial mass function in the Coma Berenices dwarf galaxy from deep near-infrared HST observations. | GENNARO M., GEHA M., TCHERNYSHYOV K., et al. | ||
2018ApJS..234...37M ![]() |
90 | C | 1 | 6 | 4 | Main-belt asteroids in the K2 Uranus field. | MOLNAR L., PAL A., SARNECZKY K., et al. | ||
2018ApJS..237...18K ![]() |
18 | D | 1 | 42 | ~ | Catalog of chromium, cobalt, and nickel abundances in globular clusters and dwarf galaxies. | KIRBY E.N., XIE J.L., GUO R., et al. | ||
2018ApJS..238...36A | 45 | X | 1 | 22 | 17 | JINAbase-A database for chemical abundances of metal-poor stars. | ABOHALIMA A. and FREBEL A. | ||
2018MNRAS.473.2060J | 19 | D | 1 | 27 | 34 | The upper bound on the lowest mass halo. | JETHWA P., ERKAL D. and BELOKUROV V. | ||
2018MNRAS.473.4064C | 45 | X | 1 | 12 | 9 | Proper motion of the Sextans dwarf galaxy from Subaru Suprime-Cam data. | CASETTI-DINESCU D.I., GIRARD T.M. and SCHRIEFER M. | ||
2018MNRAS.473.5308M | 108 | D | F | 6 | 44 | 11 | Predicting the locations of possible long-lived low-mass first stars: importance of satellite dwarf galaxies. | MAGG M., HARTWIG T., AGARWAL B., et al. | |
2018MNRAS.475.5385D | 18 | D | 1 | 26 | 4 | Phase-space mass bound for fermionic dark matter from dwarf spheroidal galaxies. | DI PAOLO C., NESTI F. and VILLANTE F.L. | ||
2018MNRAS.476.3816F | 18 | D | 3 | 80 | 19 | Tidal stripping and the structure of dwarf galaxies in the Local Group. | FATTAHI A., NAVARRO J.F., FRENK C.S., et al. | ||
2018MNRAS.479.2853N | 18 | D | 1 | 57 | 15 | The total satellite population of the Milky Way. | NEWTON O., CAUTUN M., JENKINS A., et al. | ||
2018MNRAS.480..800H | 99 | C | 1 | 11 | 102 | FIRE-2 simulations: physics versus numerics in galaxy formation. | HOPKINS P.F., WETZEL A., KERES D., et al. | ||
2018MNRAS.480.2609L | 90 | C | 1 | 41 | 3 | Pristine dwarf galaxy survey - I. A detailed photometric and spectroscopic study of the very metal-poor Draco II satellite. | LONGEARD N., MARTIN N., STARKENBURG E., et al. | ||
2018MNRAS.481.5073E | 332 | D | X F | 7 | 25 | ~ | Systematics in virial mass estimators for pressure-supported systems. | ERRANI R., PENARRUBIA J. and WALKER M.G. | |
2017A&A...602A..22A | 46 | X | 1 | 8 | 16 | Very low-mass stellar content of the young supermassive Galactic star cluster Westerlund 1. | ANDERSEN M., GENNARO M., BRANDNER W., et al. | ||
2017A&A...604A.129M ![]() |
331 | A | X C | 7 | 73 | 5 | The formation of the Milky Way halo and its dwarf satellites: a NLTE-1D abundance analysis. I. Homogeneous set of atmospheric parameters. | MASHONKINA L., JABLONKA P., PAKHOMOV Y., et al. | |
2017A&A...608A..89M ![]() |
566 | A | D | X C | 13 | 75 | 2 | The formation of the Milky Way halo and its dwarf satellites: a NLTE-1D abundance analysis. II. Early chemical enrichment. | MASHONKINA L., JABLONKA P., SITNOVA T., et al. |
2017AJ....153....6K ![]() |
17 | D | 1 | 405 | 5 | The Local Tully-Fisher relation for dwarf galaxies. | KARACHENTSEV I.D., KAISINA E.I. and KASHIBADZE O.G. | ||
2017AJ....153..254S ![]() |
44 | X | 1 | 212 | 5 | The binary fraction of stars in dwarf galaxies: the case of Leo II. | SPENCER M.E., MATEO M., WALKER M.G., et al. | ||
2017AJ....154..267C | 45 | X | 1 | 7 | 12 | Deep Subaru Hyper Suprime-Cam observations of Milky Way satellites Columba I and Triangulum II. | CARLIN J.L., SAND D.J., MUNOZ R.R., et al. | ||
2017ApJ...834...66P | 44 | X | 1 | 19 | 9 | The Next Generation Virgo Cluster Survey. XXII. Shell feature early-type dwarf galaxies in the Virgo Cluster. | PAUDEL S., SMITH R., DUC P.-A., et al. | ||
2017ApJ...834..110A | 2 | 50 | 138 | Searching for dark matter annihilation in recently discovered Milky Way satellites with Fermi-Lat. | ALBERT A., ANDERSON B., BECHTOL K., et al. | ||||
2017ApJ...835...23R | 17 | D | 1 | 17 | 10 | The origin of the heaviest metals in most ultra-faint dwarf galaxies. | ROEDERER I.U. | ||
2017ApJ...836..152L | 17 | D | 1 | 93 | 74 | One law to rule them all: the radial acceleration relation of galaxies. | LELLI F., McGAUGH S.S., SCHOMBERT J.M., et al. | ||
2017ApJ...836..202S ![]() |
44 | X | 1 | 235 | 7 | A multi-epoch kinematic study of the remote dwarf spheroidal galaxy Leo II. | SPENCER M.E., MATEO M., WALKER M.G., et al. | ||
2017ApJ...838...83K ![]() |
44 | X | 1 | 44 | 23 | Triangulum II. Not especially dense after all. | KIRBY E.N., COHEN J.G., SIMON J.D., et al. | ||
2017ApJ...838L..23H | 88 | C | 1 | 6 | 7 | Efficiency of metal mixing in dwarf galaxies. | HIRAI Y. and SAITOH T.R. | ||
2017ApJ...839...20C | 47 | X | 1 | 10 | 36 | Crater 2: an extremely cold dark matter halo. | CALDWELL N., WALKER M.G., MATEO M., et al. | ||
2017ApJ...840L..25M | 44 | 17 | Tidal tails around the outer halo globular clusters Eridanus and Palomar 15. | MYEONG G.C., JERJEN H., MACKEY D., et al. | |||||
2017ApJ...841...28P | 44 | X | 1 | 12 | 4 | Further constraints on variations in the initial mass function from low-mass X-ray binary populations. | PEACOCK M.B., ZEPF S.E., KUNDU A., et al. | ||
2017ApJ...844..111C | 141 | X | 3 | 1 | 10 | How the first stars regulated star formation. II. Enrichment by nearby supernovae. | CHEN K.-J., WHALEN D.J., WOLLENBERG K.M.J., et al. | ||
2017ApJ...845...17C | 192 | D | X | 5 | 28 | 4 | Constraining the nature of dark matter with the star-formation history of the faintest Local Group dwarf galaxy satellites. | CHAU A., MAYER L. and GOVERNATO F. | |
2017ApJ...845L..10M | 522 | X | 12 | 9 | 8 | Serendipitous discovery of RR Lyrae stars in the Leo V ultra-faint galaxy. | MEDINA G.E., MUNOZ R.R., VIVAS A.K., et al. | ||
2017ApJ...848...85J | 280 | D | X | 7 | 14 | 25 | Connecting the first galaxies with ultrafaint dwarfs in the Local Group: chemical signatures of Population III stars. | JEON M., BESLA G. and BROMM V. | |
2017ApJ...850..179C ![]() |
44 | X | 1 | 28 | 5 | The universality of the rapid neutron-capture process revealed by a possible disrupted dwarf galaxy star. | CASEY A.R. and SCHLAUFMAN K.C. | ||
2017ApJS..233...13Z | 44 | X | 1 | 10 | 8 | The impact of star formation histories on stellar mass estimation: implications from the Local Group dwarf galaxies. | ZHANG H.-X., PUZIA T.H. and WEISZ D.R. | ||
2017MNRAS.464..863V | 87 | C | 1 | 12 | 1 | Building blocks of the Milky Way's accreted spheroid. | VAN OIRSCHOT P., STARKENBURG E., HELMI A., et al. | ||
2017MNRAS.465..173P | 87 | X | 2 | 10 | 9 | First observations of W Virginis stars with K2: detection of period doubling. | PLACHY E., MOLNAR L., JURKOVIC M.I., et al. | ||
2017MNRAS.465.2212S | 45 | X | 1 | 10 | 13 | The oldest and most metal-poor stars in the APOSTLE Local Group simulations. | STARKENBURG E., OMAN K.A., NAVARRO J.F., et al. | ||
2017MNRAS.465.2420W | 44 | X | 1 | 48 | 36 | The no-spin zone: rotation versus dispersion support in observed and simulated dwarf galaxies. | WHEELER C., PACE A.B., BULLOCK J.S., et al. | ||
2017MNRAS.466.3741V | 174 | X C | 3 | 24 | 8 | Gemini/GRACES spectroscopy of stars in Tri II. | VENN K.A., STARKENBURG E., MALO L., et al. | ||
2017MNRAS.467..573C | 479 | X C F | 9 | 42 | 16 | Dynamical evidence for a strong tidal interaction between the Milky Way and its satellite, Leo V. | COLLINS M.L.M., TOLLERUD E.J., SAND D.J., et al. | ||
2017MNRAS.468..319E | 348 | X C F | 6 | 16 | 7 | The statistical challenge of constraining the low-mass IMF in Local Group dwarf galaxies. | EL-BADRY K., WEISZ D.R. and QUATAERT E. | ||
2017MNRAS.469.2335C | 18 | D | 1 | 27 | 31 | Knowing the unknowns: uncertainties in simple estimators of galactic dynamical masses. | CAMPBELL D.J.R., FRENK C.S., JENKINS A., et al. | ||
2017MNRAS.472.2670S | 17 | D | 1 | 69 | 2 | The shapes and alignments of the satellites of the Milky Way and Andromeda. | SANDERS J.L. and EVANS N.W. | ||
2017PASJ...69...76S | 261 | X C | 5 | 50 | ~ | Stellar Abundances for Galactic Archaeology Database. IV. Compilation of stars in dwarf galaxies. | SUDA T., HIDAKA J., AOKI W., et al. | ||
2016A&A...588A...7F | 1294 | D | S X C | 29 | 21 | 18 | Abundance ratios of red giants in low-mass ultra-faint dwarf spheroidal galaxies. | FRANCOIS P., MONACO L., BONIFACIO P., et al. | |
2016A&A...595A..25S | 128 | X C F | 1 | 43 | 13 | Search for 511 keV emission in satellite galaxies of the Milky Way with INTEGRAL/SPI. | SIEGERT T., DIEHL R., VINCENT A.C., et al. | ||
2016A&A...596A..40S ![]() |
129 | X C | 2 | 5 | 9 | Uninterrupted optical light curves of main-belt asteroids from the K2 mission. | SZABO R., PAL A., SARNECZKY K., et al. | ||
2016AJ....151...82R ![]() |
87 | C | 1 | 24 | 50 | Detailed chemical abundances in the r-process-rich ultra-faint dwarf galaxy Reticulum 2. | ROEDERER I.U., MATEO M., BAILEY III J.I., et al. | ||
2016AJ....151..118V | 102 | D | C | 2 | 55 | 15 | Variable stars in the field of the Hydra II ultra-faint dwarf galaxy. | VIVAS A.K., OLSEN K., BLUM R., et al. | |
2016AJ....152..166P | 69 | A | X | 2 | 9 | 15 | Proper motion of the Leo II dwarf galaxy based on Hubble Space Telescope imaging. | PIATEK S., PRYOR C. and OLSZEWSKI E.W. | |
2016AJ....152..170B ![]() |
17 | D | 1 | 244 | 15 | On the RR Lyrae stars in globulars. IV. ω Centauri optical UBVRI photometry. | BRAGA V.F., STETSON P.B., BONO G., et al. | ||
2016ARA&A..54..363D | 85 | X | 2 | 63 | 49 | The Magellanic Stream:circumnavigating the galaxy. | D'ONGHIA E. and FOX A.J. | ||
2016ApJ...817...41J ![]() |
86 | C | 1 | 14 | 20 | High-resolution spectroscopy of extremely metal-poor stars in the least-evolved galaxies: Bootes II. | JI A.P., FREBEL A., SIMON J.D., et al. | ||
2016ApJ...818...41S | 17 | D | 1 | 35 | 5 | Inferring the galactic potential with GAIA and friends: synergies with other surveys. | SANDERSON R.E. | ||
2016ApJ...818...80W | 129 | X C | 2 | 9 | 12 | Segue 1 – a compressed star formation history before reionization. | WEBSTER D., FREBEL A. and BLAND-HAWTHORN J. | ||
2016ApJ...820..119K | 86 | F | 1 | 12 | 17 | KIM 3: an ultra-faint star cluster in the constellation of Centaurus. | KIM D., JERJEN H., MacKEY D., et al. | ||
2016ApJ...826...57B | 43 | X | 1 | 16 | 15 | On the r-process enrichment of dwarf spheroidal galaxies. | BRAMANTE J. and LINDEN T. | ||
2016ApJ...826..110F ![]() |
426 | X C | 9 | 59 | 17 | The chemical evolution of the Bootes I ultra-faint dwarf galaxy. | FREBEL A., NORRIS J.E., GILMORE G., et al. | ||
2016ApJ...827L..15T | 85 | C | 1 | 12 | 9 | Tidal stirring of satellites with shallow density profiles prevents them from being too big to fail. | TOMOZEIU M., MAYER L. and QUINN T. | ||
2016ApJ...830...93J ![]() |
44 | X | 1 | 26 | 44 | Complete element abundances of nine stars in the r-process galaxy Reticulum II. | JI A.P., FREBEL A., SIMON J.D., et al. | ||
2016ApJ...832L...6W | 17 | D | 1 | 34 | 12 | Estimating the GeV emission of millisecond pulsars in dwarf spheroidal galaxies. | WINTER M., ZAHARIJAS G., BECHTOL K., et al. | ||
2016ApJ...833...16K | 128 | X | 3 | 25 | 18 | Portrait of a dark horse: a photometric and spectroscopic study of the ultra-faint Milky Way satellite Pegasus III. | KIM D., JERJEN H., GEHA M., et al. | ||
2016MNRAS.455.3288S | 45 | X | 1 | 7 | 14 | Star formation in the first galaxies - III. Formation, evolution, and characteristics of the first metal-enriched stellar cluster. | SAFRANEK-SHRADER C., MONTGOMERY M.H., MILOSAVLJEVIC M., et al. | ||
2016MNRAS.456..448P | 17 | D | 1 | 34 | 15 | The alignment of SDSS satellites with the VPOS: effects of the survey footprint shape. | PAWLOWSKI M.S. | ||
2016MNRAS.456.1654A | 43 | X | 1 | 17 | 5 | NGC 147, NGC 185 and CassII: a genetic approach to orbital properties, star formation and tidal debris. | ARIAS V., GUGLIELMO M., FERNANDO N., et al. | ||
2016MNRAS.459.2370T | 538 | A | X C F | 11 | 30 | 77 | The feeble giant. Discovery of a large and diffuse Milky Way dwarf galaxy in the constellation of Crater. | TORREALBA G., KOPOSOV S.E., BELOKUROV V., et al. | |
2016MNRAS.460.3384V | 85 | X | 2 | 17 | 10 | Probing the boundary between star clusters and dwarf galaxies: A MUSE view on the dynamics of Crater/Laevens I. | VOGGEL K., HILKER M., BAUMGARDT H., et al. | ||
2016MNRAS.460.4492D ![]() |
17 | D | 1 | 1781 | 5 | An extensive catalogue of early-type galaxies in the nearby Universe. | DABRINGHAUSEN J. and FELLHAUER M. | ||
2016MNRAS.461.2212J | 130 | X F | 2 | 24 | 60 | A Magellanic origin of the DES dwarfs. | JETHWA P., ERKAL D. and BELOKUROV V. | ||
2016MNRAS.461.2914H | 444 | D | X F | 10 | 28 | 33 | Dark matter annihilation and decay from non-spherical dark halos in galactic dwarf satellites. | HAYASHI K., ICHIKAWA K., MATSUMOTO S., et al. | |
2016MNRAS.461.3702R ![]() |
85 | X | 2 | 12 | 8 | Extended stellar substructure surrounding the Bootes I dwarf spheroidal galaxy. | RODERICK T.A., MACKEY A.D., JERJEN H., et al. | ||
2016MNRAS.463..712T | 129 | X | 3 | 24 | 38 | At the survey limits: discovery of the Aquarius 2 dwarf galaxy in the VST ATLAS and the SDSS data. | TORREALBA G., KOPOSOV S.E., BELOKUROV V., et al. | ||
2016Natur.531..610J | 5 | 20 | 113 | r-process enrichment from a single event in an ancient dwarf galaxy. | JI A.P., FREBEL A., CHITI A., et al. | ||||
2016RAA....16..163C | 17 | D | 1 | 20 | ~ | Does the gamma-ray signal from the central Milky Way indicate Sommerfeld enhancement of dark matter annihilation ? | CHAN M.-H. | ||
2015A&A...573L...3A | 45 | X | 1 | 6 | 19 | AGC 198606: A gas-bearing dark matter minihalo ? | ADAMS E.A.K., FAERMAN Y., JANESH W.F., et al. | ||
2015A&A...579L...6B | 485 | A | S X C | 10 | 11 | 5 | Chemical abundances of giant stars in the Crater stellar system. | BONIFACIO P., CAFFAU E., ZAGGIA S., et al. | |
2015A&A...580A..18F ![]() |
42 | X | 1 | 920 | 23 | The Carina Project. VIII. The α-element abundances. | FABRIZIO M., NONINO M., BONO G., et al. | ||
2015A&A...583A..67J | 210 | X C | 4 | 21 | 29 | The early days of the Sculptor dwarf spheroidal galaxy. | JABLONKA P., NORTH P., MASHONKINA L., et al. | ||
2015AJ....149...54T | 84 | F | 1 | 156 | 44 | Galaxy groups. | TULLY R.B. | ||
2015AJ....150..160B | 100 | D | C | 2 | 38 | 21 | Charting unexplored dwarf galaxy territory with RR Lyrae. | BAKER M. and WILLMAN B. | |
2015ARA&A..53..631F | 87 | C | 2 | 38 | 136 | Near-field cosmology with extremely metal-poor stars. | FREBEL A. and NORRIS J.E. | ||
2015ApJ...799L..21W | 252 | A | D | S X | 6 | 6 | 10 | Star formation in ultrafaint dwarfs: continuous or single-age bursts? | WEBSTER D., BLAND-HAWTHORN J. and SUTHERLAND R. |
2015ApJ...800...12C | 43 | X | 1 | 35 | 36 | The most metal-poor damped Lyα systems: an insight into dwarf galaxies at high-redshift. | COOKE R.J., PETTINI M. and JORGENSON R.A. | ||
2015ApJ...800...51B ![]() |
42 | X | 1 | 52 | 30 | An infrared census of DUST in Nearby Galaxies with Spitzer (DUSTiNGS). II. Discovery of metal-poor dusty AGB stars. | BOYER M.L., McQUINN K.B.W., BARMBY P., et al. | ||
2015ApJ...801...74G ![]() |
480 | D | X C | 11 | 22 | 94 | Dwarf galaxy annihilation and decay emission profiles for dark matter experiments. | GERINGER-SAMETH A., KOUSHIAPPAS S.M. and WALKER M. | |
2015ApJ...804..110W | 251 | X | 6 | 16 | 6 | The chemical evolution of very metal-poor damped Lyα systems. | WEBSTER D., BLAND-HAWTHORN J. and SUTHERLAND R.S. | ||
2015ApJ...804..136W | 84 | A | D | X | 3 | 44 | 31 | The star formation histories of local group dwarf galaxies. III. Characterizing quenching in low-mass galaxies. | WEISZ D.R., DOLPHIN A.E., SKILLMAN E.D., et al. |
2015ApJ...804L..44K | 201 | A | X | 5 | 8 | 79 | A hero's dark horse: discovery of an ultra-faint Milky Way satellite in Pegasus. | KIM D., JERJEN H., MacKEY D., et al. | |
2015ApJ...806...54E | 17 | D | 1 | 98 | 21 | Estimating the galactic mass profile in the presence of incomplete data. | EADIE G.M., HARRIS W.E. and WIDROW L.M. | ||
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