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V* V1309 Sco , the SIMBAD biblio (231 results) | C.D.S. - SIMBAD4 rel 1.8 - 2023.03.29CEST17:20:16 |
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 |
---|---|---|---|---|---|---|---|---|---|
2008CBET.1496....1N | 3 | 1 | Possible nova in Scorpius. | NAKANO S., NISHIYAMA K., KABASHIMA F., et al. | |||||
2008CBET.1496....3C | 2 | 0 | Possible nova in Scorpius. | CHEKHOVICH D., KOROTKIY S. and KRYACHKO T. | |||||
2008CBET.1496....4G | 2 | 0 | Possible nova in Scorpius. | GUIDO E., SOSTERO G. and CAMILLERI P. | |||||
2008CBET.1496....5J | 2 | 0 | Possible nova in Scorpius. | JACQUES C. and PIMENTEL E. | |||||
2008IAUC.8972....1N | 43 | T | O X | 1 | 11 | V1309 Scorpii = nova Scorpii 2008. | NAKANO S., NISHIYAMA K., KABASHIMA F., et al. | ||
2008IAUC.8972....2N | 39 | T | O X | 1 | 2 | V1309 Scorpii = nova Scorpii 2008. | NAITO H. and FUJII M. | ||
2008IAUC.8976....1R | 40 | T | O X | 1 | 4 | V1309 Scorpii. | RUDY R.J., LYNCH D.K., RUSSELL R.W., et al. | ||
2008IAUC.8976....2B | 38 | T | O X | 1 | 0 | V1309 Scorpii. | BROWN N.J., LILLER W. and DE S. AGUIAR J.G. | ||
2008CBET.1496....2S | 2 | 0 | Possible nova in Scorpius. | SUN G. and GAO X. | |||||
2008IBVS.5863....1K ![]() |
15 | D | 2 | 1274 | 13 | The 79th name-list of variable stars. | KAZAROVETS E.V., SAMUS N.N., DURLEVICH O.V., et al. | ||
2008BAVSR..57..298L | O | 16 | 0 | Aktivitaeten zwischen August und November 2008. | LANGE T. | ||||
2008IAUC.8997....2R | 40 | T | O X | 1 | 4 | V1309 Scorpii. | RUDY R.J., LYNCH D.K., RUSSELL R.W., et al. | ||
2010A&A...516A.108M | 1676 | T K A | X C | 42 | 10 | 58 | The peculiar nova V1309 Scorpii/nova Scorpii 2008. A candidate twin of V838 Monocerotis. | MASON E., DIAZ M., WILLIAMS R.E., et al. | |
2010ApJ...725..824S | 38 | X | 1 | 9 | 4 | The red nova-like variable in M31–A blue candidate in quiescence. | SHARA M.M., ZUREK D., PRIALNIK D., et al. | ||
2011A&A...528A.114T | 2704 | T K A | S X C | 67 | 8 | 182 |
V1309 Scorpii: merger of a contact binary. |
TYLENDA R., HAJDUK M., KAMINSKI T., et al. | |
2011A&A...531A..18S | 723 | T K A | X C | 17 | 4 | 28 |
Evolution of the progenitor binary of V1309 Scorpii before merger. |
STEPIEN K. | |
2011ApJ...737...17B | 178 | K A | X | 5 | 12 | 14 | Hubble space telescope imaging of the outburst site of M31 RV. II. No blue remnant in quiescence. | BOND H.E. | |
2011A&A...532A.138T ![]() |
77 | X | 2 | 10 | 14 | High-resolution optical spectroscopy of V838 Monocerotis in 2009. | TYLENDA R., KAMINSKI T., SCHMIDT M., et al. | ||
2011AcA....61..123P | 77 | X | 2 | 14 | 10 | The Optical Gravitational Lensing Experiment. Dwarf novae in the OGLE data. I. Three new dwarf novae: one in the period gap and two longer period objects. | POLESKI R., UDALSKI A., SKOWRON J., et al. | ||
2011MNRAS.416.1965B | 233 | X F | 5 | 7 | 19 | Mergerburst transients of brown dwarfs with exoplanets. | BEAR E., KASHI A. and SOKER N. | ||
2011A&A...535A..50M | 156 | X | 4 | 8 | 22 | A binary merger origin for inflated hot Jupiter planets. | MARTIN E.L., SPRUIT H.C. and TATA R. | ||
2011ApJS..197...31S ![]() |
15 | D | 1 | 76 | 95 | Swift X-ray observations of classical novae. II. The super soft source sample. | SCHWARZ G.J., NESS J.-U., OSBORNE J.P., et al. | ||
2011ApJ...743..118H ![]() |
77 | X | 2 | 24 | 23 | The photometric and spectral evolution of the 2008 luminous optical transient in NGC 300. | HUMPHREYS R.M., BOND H.E., BEDIN L.R., et al. | ||
2011BASI...39..375K | 30 | 7 | Transients in the local universe: systematically bridging the gap between novae and supernovae. | KASLIWAL M.M. | |||||
2012ApJ...746..100S | 79 | C | 1 | 19 | 43 | Formation of bipolar planetary nebulae by intermediate-luminosity optical transients. | SOKER N. and KASHI A. | ||
2012A&A...542A.124L | 39 | X | 1 | 55 | 31 | Period decrease in three SuperWASP eclipsing binary candidates near the short-period limit. | LOHR M.E., NORTON A.J., KOLB U.C., et al. | ||
2012MNRAS.425..950N | 39 | X | 1 | 39 | 39 | Four ultra-short-period eclipsing M-dwarf binaries in the WFCAM Transit Survey. | NEFS S.V., BIRKBY J.L., SNELLEN I.A.G., et al. | ||
2012A&A...548A..23T | 39 | X | 1 | 4 | 6 | Light echo of V838 Monocerotis: properties of the echoing medium. | TYLENDA R. and KAMINSKI T. | ||
2013ApJ...764L...6S | 42 | X | 1 | 6 | 47 | Explaining the supernova impostor SN 2009ip as mergerburst. | SOKER N. and KASHI A. | ||
2013ApJ...764...62D | 158 | X | 4 | 8 | 19 | The very short period M dwarf binary SDSS J001641-000925. | DAVENPORT J.R.A., BECKER A.C., WEST A.A., et al. | ||
2012PASP..124.1057W | 94 | D | S | 5 | 74 | 54 | The Stony Brook/SMARTS Atlas of (mostly) southern novae. | WALTER F.M., BATTISTI A., TOWERS S.E., et al. | |
2013MNRAS.428.1218J | 39 | X | 1 | 8 | 7 | The binary merger channel for the progenitor of the fastest rotating O-type star VFTS 102. | JIANG D., HAN Z., YANG L., et al. | ||
2013MNRAS.430.3070B | 63 | A | X | 2 | 19 | 5 | Light-curve analysis and orbital period change of the extreme mass-ratio overcontact binary AW CrB. | BROENS E. | |
2013MNRAS.431L..33N | 1536 | T K A | D | S X C | 37 | 6 | 26 |
The dusty aftermath of the V1309 Sco binary merger. |
NICHOLLS C.P., MELIS C., SOSZYNSKI I., et al. |
2012MNRAS.425.2778M | 80 | X | 2 | 7 | 40 | Optical and X-ray transients from planet-star mergers. | METZGER B.D., GIANNIOS D. and SPIEGEL D.S. | ||
2013AJ....146...35Y ![]() |
39 | X | 1 | 15 | 18 | Deep, low mass ratio overcontact binary systems. XIII. DZ Piscium with intrinsic light variability. | YANG Y.-G., QIAN S.-B., ZHANG L.-Y., et al. | ||
2013A&A...555A..16T | 748 | X C | 18 | 11 | 43 | OGLE-2002-BLG-360: from a gravitational microlensing candidate to an overlooked red transient. | TYLENDA R., KAMINSKI T., UDALSKI A., et al. | ||
2013ApJ...777...23Z | 1638 | T A | S X C | 39 | 3 | 7 | Origin of dust around V1309 Sco. | ZHU C., LU G. and WANG Z. | |
2013MNRAS.435..943P | 43 | X | 1 | 4 | 33 | Greatly enhanced eccentricity oscillations in quadruple systems composed of two binaries: implications for stars, planets and transients. | PEJCHA O., ANTOGNINI J.M., SHAPPEE B.J., et al. | ||
2012ARA&A..50..107L | 45 | X | 1 | 26 | 330 | Presupernova evolution of massive single and binary stars. | LANGER N. | ||
2013A&A...558A..82K ![]() |
40 | X | 1 | 5 | 11 | Optical spectropolarimetry of V4332 Sagittarii. | KAMINSKI T. and TYLENDA R. | ||
2014AJ....147...11M | 2979 | T K A | D | S X C | 73 | 4 | 6 | The optical and infrared photometric evolution of the recent stellar merger, V1309 Sco. | McCOLLUM B., LAINE S., VAISANEN P., et al. |
2014ApJ...782....7D | 47 | X | 1 | 8 | 123 | The incidence of stellar mergers and mass gainers among massive stars. | DE MINK S.E., SANA H., LANGER N., et al. | ||
2014MNRAS.438..169B | 46 | X | 1 | 1 | 13 | Magnetically powered outbursts from white dwarf mergers. | BELOBORODOV A.M. | ||
2014MNRAS.438..859J | 41 | X | 1 | 3 | 8 | The detached-binary channel for the formation of contact binaries. | JIANG D., HAN Z. and LI L. | ||
2014MNRAS.439..954S | 40 | X | 1 | 8 | 2 | A pre-explosion optical transient event from a white dwarf merger with a giant supernova progenitor. | SABACH E. and SOKER N. | ||
2014ApJ...786...39N | 1100 | T K A | X | 27 | 7 | 57 |
V1309 Sco–Understanding a merger. |
NANDEZ J.L.A., IVANOVA N. and LOMBARDI J.C.Jr | |
2014ApJ...788...22P | 2209 | T K A | S X C | 53 | 8 | 19 |
Burying a binary: dynamical mass loss and a continuous optically thick outflow explain the candidate stellar merger V1309 Scorpii. |
PEJCHA O. | |
2014ApJS..212...23B | 42 | X | 1 | 1 | 4 | A hybrid advection scheme for conserving angular momentum on a refined cartesian mesh. | BYERLY Z.D., ADELSTEIN-LELBACH B., TOHLINE J.E., et al. | ||
2014A&A...569L...4C | 40 | X | 1 | 9 | 5 | The RCB star V854 Centauri is surrounded by a hot dusty shell. | CHESNEAU O., MILLOUR F., DE MARCO O., et al. | ||
2014MNRAS.443..784M | 40 | X | 1 | 27 | 13 | Recurrent and symbiotic novae in data from the Optical Gravitational Lensing Experiment. | MROZ P., POLESKI R., UDALSKI A., et al. | ||
2014MNRAS.443.1319K | 994 | K A | D | X C F | 24 | 14 | 40 | Stellar mergers are common. | KOCHANEK C.S., ADAMS S.M. and BELCZYNSKI K. |
2014MNRAS.445.2492M | 41 | X | 1 | 7 | 25 | Wave-driven stellar expansion and binary interaction in pre-supernova outbursts. | McLEY L. and SOKER N. | ||
2013A&ARv..21...59I | 208 | X | 5 | 18 | 422 | Common envelope evolution : where we stand and how we can move forward. | IVANOVA N., JUSTHAM S., CHEN X., et al. | ||
2014A&A...572A.110L ![]() |
40 | X | 1 | 19 | 6 | MY Camelopardalis, a very massive merger progenitor. | LORENZO J., NEGUERUELA I., VAL BAKER A.K.F., et al. | ||
2015AJ....149...17L | 40 | X | 1 | 22 | 5 | The continued optical to mid-infrared evolution of V838 Monocerotis. | LOEBMAN S.R., WISNIEWSKI J.P., SCHMIDT S.J., et al. | ||
2015AJ....149...49R ![]() |
44 | X | 1 | 3 | 14 | Time sequence spectroscopy of AW UMa. The 518 nm Mg I triplet region analyzed with broadening functions. | RUCINSKI S.M. | ||
2015ApJ...799..118P | 45 | X | 1 | 7 | 39 | Secular evolution of binaries near massive black holes: formation of compact binaries, merger/collision products and G2-like objects. | PRODAN S., ANTONINI F. and PERETS H.B. | ||
2015MNRAS.446..510K | 80 | X | 2 | 54 | 9 | Photometry and Hα studies of a low-mass-ratio overcontact binary ASAS J082243+1927.0. | KANDULAPATI S., DEVARAPALLI S.P. and PASAGADA V.R. | ||
2014NewA...31....1A | 238 | X | 6 | 9 | 6 | First multi-color photometric study and preliminary elements for the low-mass ratio, possible progenitors of merging stars, W UMa systems TYC 3836-0854-1 and TYC 4157-0683-1. | ACERBI F., BARANI C. and MARTIGNONI M. | ||
2015A&A...575A..10D | 40 | X | 1 | 70 | 12 | First detections of FS Canis Majoris stars in clusters. Evolutionary state as constrained by coeval massive stars. | DE LA FUENTE D., NAJARRO F., TROMBLEY C., et al. | ||
2015MNRAS.447...25L | 42 | X | 1 | 2 | 4 | An efficient radiative cooling approximation for use in hydrodynamic simulations. | LOMBARDI J.C.Jr, McINALLY W.G. and FABER J.A. | ||
2015PASP..127..234L | 44 | X | 1 | 7 | 29 | Evryscope science: exploring the potential of All-Sky gigapixel-scale telescopes. | LAW N.M., FORS O., RATZLOFF J., et al. | ||
2015RAA....15...55W | 401 | X | 10 | 3 | ~ | Contribution of dust produced by binary merger ejecta. | WANG Z.-J., ZHU C.-H. and LU G.-L. | ||
2015ApJ...803...99C | 42 | X | 1 | 23 | 49 | Binarity and the abundance discrepancy problem in planetary nebulae. | CORRADI R.L.M., GARCIA-ROJAS J., JONES D., et al. | ||
2015ApJ...805L..18W | 162 | X | 4 | 13 | 25 | A luminous red nova in M31 and its progenitor system. | WILLIAMS S.C., DARNLEY M.J., BODE M.F., et al. | ||
2015ApJ...806..263D | 53 | X | 1 | 12 | 160 | Double compact objects III: gravitational-wave detection rates. | DOMINIK M., BERTI E., O'SHAUGHNESSY R., et al. | ||
2015A&A...578L..10K | 41 | X | 1 | 14 | 17 | The January 2015 outburst of a red nova in M 31. | KURTENKOV A.A., PESSEV P., TOMOV T., et al. | ||
2015A&A...578A..75T ![]() |
546 | A | X | 14 | 11 | 8 | VLT/UVES spectroscopy of V4332 Sagittarii in 2005: The best view on a decade-old stellar-merger remnant. | TYLENDA R., GORNY S.K., KAMINSKI T., et al. | |
2015A&A...580A..34K | 2674 | T K A | S X C | 64 | 13 | 20 |
Post-outburst spectra of a stellar-merger remnant of V1309 Scorpii: from a twin of V838 Monocerotis to a clone of V4332 Sagittarii. |
KAMINSKI T., MASON E., TYLENDA R., et al. | |
2015AJ....150...83Z | 40 | X | 1 | 20 | 6 | The first photometric analysis of the overcontact binary MQ UMa with an additional component. | ZHOU X., QIAN S.-B., LIAO W.-P., et al. | ||
2015MNRAS.451.1561Z | 80 | X | 2 | 4 | 3 | A new dust budget in the Large Magellanic Cloud. | ZHU C., LU G. and WANG Z. | ||
2015ApJ...812..102A | 40 | X | 1 | 15 | 14 | Discovery of the massive overcontact binary VFTS352: evidence for enhanced internal mixing. | ALMEIDA L.A., SANA H., DE MINK S.E., et al. | ||
2015ApJ...814..109B | 40 | X | 1 | 5 | 2 | Evolution of the dust in V4332 Sagittarii. | BANERJEE D.P.K., NUTH III J.A., MISSELT K.A., et al. | ||
2016MNRAS.455.4351P | 798 | A | X C F | 18 | 12 | 29 | Cool and luminous transients from mass-losing binary stars. | PEJCHA O., METZGER B.D. and TOMIDA K. | |
2016AJ....151...69S | 41 | X | 1 | 17 | 9 | ASAS J083241+2332.4: a new extreme low mass ratio overcontact binary system. | SRIRAM K., MALU S., CHOI C.S., et al. | ||
2016MNRAS.456.3401P | 42 | X | 1 | 15 | 20 | Was the nineteenth century giant eruption of Eta Carinae a merger event in a triple system? | PORTEGIES ZWART S.F. and VAN DEN HEUVEL E.P.J. | ||
2016MNRAS.456.4219A | 47 | X | 1 | 4 | 25 | Dynamical formation and scattering of hierarchical triples: cross-sections, Kozai-Lidov oscillations, and collisions. | ANTOGNINI J.M.O. and THOMPSON T.A. | ||
2016RAA....16d..16Z | 893 | T | X C | 20 | 7 | ~ |
A low-mass-ratio and deep contact binary as the progenitor of the merger V1309 Sco. |
ZHU L.-Y., ZHAO E.-G. and ZHOU X. | |
2015ATel.7173....1D | 41 | X | 1 | 5 | 8 | The Probable M31 Stellar Merger: Identification and Variability of the Likely Progenitor System. | DONG S., KOCHANEK C.S., ADAMS S., et al. | ||
2015AcA....65...39S ![]() |
40 | X | 1 | 248 | 15 | Ultra-short-period binary systems in the OGLE fields toward the Galactic Bulge. | SOSZYNSKI I., STEPIEN K., PILECKI B., et al. | ||
2016RAA....16f..14K | 203 | X C | 4 | 22 | 6 | Operation of the jet feedback mechanism (JFM) in intermediate luminosity optical transients (ILOTs). | KASHI A. and SOKER N. | ||
2016MNRAS.457.2355S | 41 | X | 1 | 22 | 21 | Rejuvenation of stellar mergers and the origin of magnetic fields in massive stars. | SCHNEIDER F.R.N., PODSIADLOWSKI P., LANGER N., et al. | ||
2016MNRAS.457.2871E | 41 | X | 1 | 9 | 3 | CK Vul: a smorgasbord of hydrocarbons rules out a 1670 nova (and much else besides). | EVANS A., GEHRZ R.D., WOODWARD C.E., et al. | ||
2016MNRAS.458..950S | 553 | T A | X | 13 | 23 | 39 |
Massive star mergers and the recent transient in NGC 4490: a more massive cousin of V838 Mon and V1309 Sco. |
SMITH N., ANDREWS J.E., VAN DYK S.D., et al. | |
2016RAA....16g..14B | 41 | X | 1 | 16 | ~ | Using Intermediate-Luminosity Optical Transients (ILOTs) to reveal extended extra-solar Kuiper belt objects. | BEAR E. and SOKER N. | ||
2016RAA....16g..17S | 41 | X | 1 | 9 | 5 | Binary interactions with high accretion rates onto main sequence stars. | SHIBER S., SCHREIER R. and SOKER N. | ||
2016A&A...592A.134T | 3599 | T K A | X C | 87 | 11 | 12 |
Evolution of the stellar-merger red nova V1309 Scorpii: Spectral energy distribution analysis. |
TYLENDA R. and KAMINSKI T. | |
2016MNRAS.460.2822B | 41 | X | 1 | 13 | 3 | Discovery of a long-lived, high-amplitude dusty infrared transient. | BRITT C.T., MACCARONE T.J., GREEN J.D., et al. | ||
2016NewA...47...16S | 83 | C | 3 | 6 | 15 | Intermediate luminosity optical transients during the grazing envelope evolution (GEE). | SOKER N. | ||
2016MNRAS.461.1177O | 301 | D | X F | 7 | 159 | 10 | The distances of the Galactic novae. | OZDONMEZ A., GUVER T., CABRERA-LAVERS A., et al. | |
2016MNRAS.461.2527P | 273 | A | X | 7 | 5 | 26 | Binary stellar mergers with marginally bound ejecta: excretion discs, inflated envelopes, outflows, and their luminous transients. | PEJCHA O., METZGER B.D. and TOMIDA K. | |
2016ApJ...830..142L | 42 | X | 1 | 11 | 12 | Rising from the ashes: mid-infrared re-brightening of the impostor SN 2010da in NGC 300. | LAU R.M., KASLIWAL M.M., BOND H.E., et al. | ||
2016MNRAS.462..217S | 529 | X | 13 | 11 | 11 | Explaining two recent intermediate-luminosity optical transients (ILOTs) by a binary interaction and jets. | SOKER N. and KASHI A. | ||
2016MNRAS.462..362I | 71 | X | 1 | 1 | 30 | Common envelope events with low-mass giants: understanding the transition to the slow spiral-in. | IVANOVA N. and NANDEZ J.L.A. | ||
2016AJ....152..199S ![]() |
81 | X | 2 | 5 | 1 | BVRI observations and analyses of the semidetached binary FF Vulpecula. | SAMEC R.G., NYAUDE R., CATON D., et al. | ||
2016AJ....152..219S ![]() |
41 | X | 1 | 8 | 3 | BVRI photometric 2015 WD analysis of the southern totally eclipsing, solar-type, shallow-contact W UMa binary, DD Indus. | SAMEC R.G., NORRIS C.L., VAN HAMME W., et al. | ||
2017ApJ...834..107B ![]() |
206 | X | 5 | 29 | 27 | Common envelope ejection for a luminous red nova in M101. | BLAGORODNOVA N., KOTAK R., POLSHAW J., et al. | ||
2017ApJ...834..196S ![]() |
16 | D | 1 | 244 | 15 | The Galactic nova rate revisited. | SHAFTER A.W. | ||
2017ApJ...835..282M | 455 | X C | 10 | 11 | 27 | Lessons from the onset of a common envelope episode: the remarkable M31 2015 luminous red nova outburst. | MacLEOD M., MACIAS P., RAMIREZ-RUIZ E., et al. | ||
2017ApJ...837..167J | 82 | X | 2 | 39 | 4 | SPIRITS 15c and SPIRITS 14buu: two obscured supernovae in the nearby star-forming galaxy IC 2163. | JENCSON J.E., KASLIWAL M.M., JOHANSSON J., et al. | ||
2017ApJ...839...88K ![]() |
41 | X | 1 | 229 | 18 | SPIRITS: uncovering unusual infrared transients with Spitzer. | KASLIWAL M.M., BALLY J., MASCI F., et al. | ||
2017MNRAS.464.3561M | 41 | X | 1 | 8 | 3 | A close encounter of the massive kind. | MAIZ-APELLANIZ J., SANA H., BARBA R.H., et al. | ||
2017PASJ...69...37Z | 82 | X | 2 | 9 | ~ | Multi-color photometric investigation of the totally eclipsing binary NO Camelopardalis. | ZHOU X., QIAN S. and ZHANG B. | ||
2017ApJS..229...36G | 182 | D | X | 5 | 11 | 17 | Common envelope light curves. I. Grid-code module calibration. | GALAVIZ P., DE MARCO O., PASSY J.-C., et al. | |
2017ApJ...840....1M | 1342 | A | S X C | 31 | 19 | 12 | Prediction of a red nova outburst in KIC 9832227. | MOLNAR L.A., VAN NOORD D.M., KINEMUCHI K., et al. | |
2017MNRAS.467.3299K | 123 | X | 3 | 8 | 5 | Type II intermediate-luminosity optical transients (ILOTs). | KASHI A. and SOKER N. | ||
2017MNRAS.468.3533E | 82 | X | 2 | 73 | 6 | Models for 60 double-lined binaries containing giants. | EGGLETON P.P. and YAKUT K. | ||
2017MNRAS.468.4938K | 123 | X F | 2 | 5 | 2 | An intermediate luminosity optical transient (ILOTs) model for the young stellar object ASASSN-15qi. | KASHI A. and SOKER N. | ||
2017MNRAS.468.4968A | 46 | X | 1 | 8 | 44 | The search for failed supernovae with the Large Binocular Telescope: confirmation of a disappearing star. | ADAMS S.M., KOCHANEK C.S., GERKE J.R., et al. | ||
2017MNRAS.470.2339L | 82 | X | 2 | 6 | 3 | MASTER OT J004207.99+405501.1/M31LRN 2015 luminous red nova in M31: discovery, light curve, hydrodynamics and evolution. | LIPUNOV V.M., BLINNIKOV S., GORBOVSKOY E., et al. | ||
2017MNRAS.470.2929M | 45 | X | 1 | 3 | 13 | Dynamics of jets during the common-envelope phase. | MORENO MENDEZ E., LOPEZ-CAMARA D. and DE COLLE F. | ||
2017ApJ...847...80W | 123 | X | 3 | 14 | 9 | The post-periapsis evolution of Galactic Center source G1: the second case of a resolved tidal interaction with a supermassive black hole. | WITZEL G., SITARSKI B.N., GHEZ A.M., et al. | ||
2017ApJ...848..131Q | 41 | X | 1 | 3 | 1 | A new stellar outburst associated with the magnetic activities of the K-type dwarf in a white dwarf binary. | QIAN S.-B., HAN Z.-T., ZHANG B., et al. | ||
2017ApJ...849L..23M | 41 | X | 1 | 9 | 1 | The emergence of the infrared transient VVV-WIT-06. | MINNITI D., SAITO R.K., FORSTER F., et al. | ||
2017PASP..129l4204L | 41 | X | 1 | 5 | 4 | TYC 1337-1137-1 and TYC 3836-0854-1: two low-mass ratio, deep overcontact systems near the end evolutionary stage of contact binaries. | LIAO W.-P., QIAN S.-B., SOONTHORNTHUM B., et al. | ||
2017ApJ...850...59P | 2166 | K A | X C | 52 | 8 | 8 | Pre-explosion spiral mass loss of a binary star merger. | PEJCHA O., METZGER B.D., TYLES J.G., et al. | |
2017A&A...607A..78K ![]() |
82 | X | 2 | 11 | 4 | Organic molecules, ions, and rare isotopologues in the remnant of the stellar-merger candidate, CK Vulpeculae (Nova 1670). | KAMINSKI T., MENTEN K.M., TYLENDA R., et al. | ||
2017MNRAS.471.3200M | 429 | D | X C | 10 | 11 | 12 | Shock-powered light curves of luminous red novae as signatures of pre-dynamical mass-loss in stellar mergers. | METZGER B.D. and PEJCHA O. | |
2018ApJ...852..108F ![]() |
125 | X | 3 | 34 | 6 | A detailed observational analysis of V1324 Sco, the most gamma-ray-luminous classical nova to date. | FINZELL T., CHOMIUK L., METZGER B.D., et al. | ||
2018MNRAS.473..747C | 42 | X | 1 | 9 | 4 | Wind-accelerated orbital evolution in binary systems with giant stars. | CHEN Z., BLACKMAN E.G., NORDHAUS J., et al. | ||
2017RAA....17..115J | 41 | X | 1 | 3 | ~ | Long-term photometric study of a faint W UMa binary in the direction of M31. | JOSHI Y.C. and RUKMINI J. | ||
2018MNRAS.474...20H | 47 | X | 1 | 1 | 5 | On the stability and collisions in triple stellar systems. | HE M.Y. and PETROVICH C. | ||
2018A&A...609A.120F | 334 | X C | 7 | 82 | 3 | Search for gamma-ray emission from Galactic novae with the Fermi -LAT. | FRANCKOWIAK A., JEAN P., WOOD M., et al. | ||
2018ApJ...854..147B | 47 | X | 1 | 3 | 16 | Stellar multiplicity meets stellar Evolution and metallicity: the APOGEE view. | BADENES C., MAZZOLA C., THOMPSON T.A., et al. | ||
2018MNRAS.474.5199L | 42 | X | 1 | 73 | 5 | A new mechanism of long-term period variations for W UMa-type contact binaries. | LIU L., QIAN S.-B. and XIONG X. | ||
2018AJ....155..172S | 84 | X | 2 | 3 | ~ | Possible presence of a third body in the Kepler K2 variable EPIC 202073314. | SRIRAM K., MALU S., CHOI C.S., et al. | ||
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2018MNRAS.476.4162O | 17 | D | 1 | 297 | 1 | A new catalogue of Galactic novae: investigation of the MMRD relation and spatial distribution. | OZDONMEZ A., EGE E., GUVER T., et al. | ||
2018MNRAS.477.2349I | 53 | X | 1 | 1 | 11 | The effect of binding energy and resolution in simulations of the common envelope binary interaction. | IACONI R., DE MARCO O., PASSY J.-C., et al. | ||
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2018A&A...615A.120P | 209 | X | 5 | 4 | ~ | Infrared spectroscopy of the merger candidate KIC 9832227. | PAVLENKO Y.V., EVANS A., BANERJEE D.P.K., et al. | ||
2018ApJ...863....5M | 253 | X | 6 | 4 | 10 | Runaway coalescence at the onset of common envelope episodes. | MacLEOD M., OSTRIKER E.C. and STONE J.M. | ||
2018ApJ...863...20J | 42 | X | 1 | 60 | 1 | SPIRITS 16tn in NGC 3556: a heavily obscured and low-luminosity supernova at 8.8 Mpc. | JENCSON J.E., KASLIWAL M.M., ADAMS S.M., et al. | ||
2018ApJ...864L..32S | 209 | T | X | 4 | 9 | ~ | KIC 9832227: using Vulcan data to negate the 2022 red nova merger prediction. | SOCIA Q.J., WELSH W.F., SHORT D.R., et al. | |
2018MNRAS.473.3765M | 209 | X F | 4 | 18 | 3 | The dusty aftermath of SN Hunt 248: merger-burst remnant? | MAUERHAN J.C., VAN DYK S.D., JOHANSSON J., et al. | ||
2018A&A...617A.129K | 2826 | K A | S X C | 66 | 31 | 2 | Submillimeter-wave emission of three Galactic red novae: cool molecular outflows produced by stellar mergers. | KAMINSKI T., STEFFEN W., TYLENDA R., et al. | |
2018MNRAS.480.1466S | 293 | X C | 6 | 17 | 1 | Light echoes from the plateau in Eta Carinae's Great Eruption reveal a two-stage shock-powered event. | SMITH N., ANDREWS J.E., REST A., et al. | ||
2018AJ....156..199S ![]() |
42 | X | 1 | 20 | ~ | TY Pup: a low-mass-ratio and deep contact binary as a progenitor candidate of luminous red novae. | SAROTSAKULCHAI T., QIAN S.-B., SOONTHORNTHUM B., et al. | ||
2018MNRAS.480.3424C | 84 | X | 2 | 16 | 1 | AT 2017be - a new member of the class of intermediate-luminosity red transients. | CAI Y.-Z., PASTORELLO A., FRASER M., et al. | ||
2018MNRAS.481..153O | 42 | X | 1 | 10 | ~ | Very massive stars in not so massive clusters. | OH S. and KROUPA P. | ||
2018ApJ...868..136M | 293 | X | 7 | 3 | ~ | Bound outflows, unbound ejecta, and the shaping of bipolar remnants during stellar coalescence. | MacLEOD M., OSTRIKER E.C. and STONE J.M. | ||
2018MNRAS.481.3683K | 125 | X | 3 | 2 | ~ | Numerical simulations of mass transfer in binaries with bipolytropic components. | KADAM K., MOTL P.M., MARCELLO D.C., et al. | ||
2018MNRAS.481.4931E | 42 | X | 1 | 10 | ~ | ALMA reveals the aftermath of a white dwarf-brown dwarf merger in CK Vulpeculae. | EYRES S.P.S., EVANS A., ZIJLSTRA A., et al. | ||
2017PASJ...69...79L | 82 | X | 2 | 29 | ~ | Comprehensive photometric study of an extremely low mass ratio deep contact binary in the globular cluster M 4 . | LI K., HU S., CHEN X., et al. | ||
2018RAA....18...20T | 42 | X | 1 | 14 | ~ | Multi-color light curves and orbital period research of eclipsing binary V1073 Cyg. | TIAN X.-M., ZHU L.-Y., QIAN S.-B., et al. | ||
2018PASJ...70...78K | 42 | X | 1 | 15 | ~ | On the nature of long-period dwarf novae with rare and low-amplitude outbursts. | KIMURA M., KATO T., MAEHARA H., et al. | ||
2019MNRAS.484..631R | 170 | X | 4 | 6 | ~ | Extending common envelope simulations from Roche lobe overflow to the nebular phase. | REICHARDT T.A., DE MARCO O., IACONI R., et al. | ||
2019MNRAS.484.1325D | 43 | X | 1 | 12 | ~ | Distinguishing circumstellar from stellar photometric variability in Eta Carinae. | DAMINELI A., FERNANDEZ-LAJUS E., ALMEIDA L.A., et al. | ||
2019MNRAS.484.4711M | 85 | X | 2 | 4 | ~ | Constraints on the common-envelope evolution process from wide triple systems. | MICHAELY E. and PERETS H.B. | ||
2018RAA....18...46K | 42 | X | 1 | 16 | ~ | Observations and light curve solutions of a selection of middle-contact W UMa binaries. | KJURKCHIEVA D.P., POPOV V.A., VASILEVA D.L., et al. | ||
2019ApJ...874...82H ![]() |
85 | C | 1 | 57 | ~ | PTF14jg: the remarkable outburst and post-burst evolution of a previously anonymous galactic star. | HILLENBRAND L.A., MILLER A.A., CARPENTER J.M., et al. | ||
2019ApJ...874L..26H | 43 | X | 1 | 5 | ~ | The unexpected spectrum of the innermost ejecta of the red hypergiant VY CMa. | HUMPHREYS R.M., ZIURYS L.M., BERNAL J.J., et al. | ||
2019RAA....19...56H | 43 | X | 1 | 7 | ~ | New photometric investigation of the low-mass-ratio contact binary star V1853 Orionis. | HE J.-J., QIAN S.-B., SOONTHORNTHUM B., et al. | ||
2019MNRAS.486.1220F | 1830 | T A | D | X C F | 41 | 4 | ~ |
The asymptotic evolution of the stellar merger V1309 Sco: a Blue Straggler in the making? |
FERREIRA T., SAITO R.K., MINNITI D., et al. |
2019ApJ...877...28M | 43 | X | 1 | 1 | ~ | Polygram stars: resonant tidal excitation of fundamental oscillation modes in asynchronous stellar coalescence. | MacLEOD M., VICK M., LAI D., et al. | ||
2019A&A...625L...8P ![]() |
128 | O X | 3 | 16 | ~ | The evolution of luminous red nova AT 2017jfs in NGC 4470. | PASTORELLO A., CHEN T.-W., CAI Y.-Z., et al. | ||
2019ATel12876....1M | 43 | X | 1 | 3 | ~ | Rebrightening of V1047 Cen (Nova Cen 2005). | MROZ P. and UDALSKI A. | ||
2019A&A...626A..22J | 85 | X | 2 | 1 | ~ | Stellar activity and planetary atmosphere evolution in tight binary star systems. | JOHNSTONE C.P., PILAT-LOHINGER E., LUFTINGER T., et al. | ||
2019PASP..131h4203T | 17 | D | 1 | 32 | ~ | Am-type eclipsing binary V2787 Ori: an evolved shallow-contact binary with an extremely low mass ratio. | TIAN X.-M., ZHU L.-Y. and WANG Z.-H. | ||
2019ApJ...880L..20J | 43 | X | 1 | 22 | ~ | Discovery of an intermediate-luminosity red transient in M51 and its likely dust-obscured, infrared-variable progenitor. | JENCSON J.E., ADAMS S.M., BOND H.E., et al. | ||
2019A&A...628A.124T | 85 | X | 2 | 11 | ~ | Elemental abundances in the remnant of the ancient eruption of CK Vulpeculae. | TYLENDA R., KAMINSKI T. and MEHNER A. | ||
2019MNRAS.489..891H | 85 | X | 2 | 2 | ~ | Kinematics of mass-loss from the outer Lagrange point L2. | HUBOVA D. and PEJCHA O. | ||
2019A&A...630A..75P ![]() |
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2019ApJ...884...58S | 85 | X | 2 | 12 | ~ | Intermediate luminosity optical transients (ILOTs) from merging giants. | SEGEV R., SABACH E. and SOKER N. | ||
2019A&A...631A.126K ![]() |
324 | A | X C | 7 | 30 | ~ | The hierarchical triple nature of the former red nova precursor candidate KIC 9832227. | KOVACS G., HARTMAN J.D. and BAKOS G.A. | |
2019ApJ...886...40J ![]() |
85 | X | 2 | 82 | ~ | The SPIRITS sample of luminous infrared transients: uncovering hidden supernovae and dusty stellar outbursts in nearby galaxies. | JENCSON J.E., KASLIWAL M.M., ADAMS S.M., et al. | ||
2019MNRAS.489.3334I | 128 | X | 3 | 5 | ~ | Properties of the post-inspiral common envelope ejecta - I. Dynamical and thermal evolution. | IACONI R., MAEDA K., DE MARCO O., et al. | ||
2020MNRAS.492.2731J | 44 | X | 1 | 4 | ~ | Case AD, AR, and AS binary evolution and their possible connections with W UMa binaries. | JIANG D. | ||
2019PASJ...71...81S | 43 | X | 1 | 33 | ~ | YZ Phoenicis: a very short period K-type contact binary with variation of the O’Connell effect and orbital period change. | SAROTSAKULCHAI T., QIAN S.-B., SOONTHORNTHUM B., et al. | ||
2020MNRAS.492.3229H | 192 | D | X | 5 | 23 | ~ | Luminous Red Novae: population models and future prospects. | HOWITT G., STEVENSON S., VIGNA-GOMEZ A., et al. | |
2020MNRAS.492.4847L | 87 | X | 2 | 21 | ~ | VVV-WIT-01: highly obscured classical nova or protostellar collision? | LUCAS P.W., MINNITI D., KAMBLE A., et al. | ||
2020MNRAS.493.2271H | 44 | X | 1 | 9 | ~ | Lifetime of short-period binaries measured from their Galactic kinematics. | HWANG H.-C. and ZAKAMSKA N.L. | ||
2020ApJ...892...13S | 131 | X | 3 | 7 | ~ | Explosions driven by the coalescence of a compact object with the core of a massive-star companion inside a common envelope: circumstellar properties, light curves, and population statistics. | SCHRODER S.L., MacLEOD M., LOEB A., et al. | ||
2020MNRAS.493.4861G | 44 | X | 1 | 1 | ~ | Gravitational waves from in-spirals of compact objects in binary common-envelope evolution. | GINAT Y.B., GLANZ H., PERETS H.B., et al. | ||
2020ApJ...893..106M | 636 | A | S X C | 13 | 2 | ~ | Runaway coalescence of pre-common-envelope stellar binaries. | MacLEOD M. and LOEB A. | |
2020A&A...636A..31T | 44 | X | 1 | 1 | ~ | Looks can be deceiving. Underestimating the age of single white dwarfs due to binary mergers. | TEMMINK K.D., TOONEN S., ZAPARTAS E., et al. | ||
2020A&A...637A..20W ![]() |
44 | X | 1 | 15 | ~ | AT 2019abn: multi-wavelength observations over the first 200 days. | WILLIAMS S.C., JONES D., PESSEV P., et al. | ||
2020A&A...637A..59A | 131 | X | 3 | 11 | ~ | Chemical equilibrium in AGB atmospheres: successes, failures, and prospects for small molecules, clusters, and condensates. | AGUNDEZ M., MARTINEZ J.I., DE ANDRES P.L., et al. | ||
2020A&A...639A.104S | 87 | X | 2 | 24 | ~ | The Carnegie Supernova Project II. Observations of the luminous red nova AT 2014ej. | STRITZINGER M.D., TADDIA F., FRASER M., et al. | ||
2020MNRAS.496.5503B | 696 | X C | 15 | 10 | ~ | Progenitor, precursor, and evolution of the dusty remnant of the stellar merger M31-LRN-2015. | BLAGORODNOVA N., KARAMBELKAR V., ADAMS S.M., et al. | ||
2020MNRAS.497.3166I | 435 | X | 10 | 4 | ~ | Properties of the post in-spiral common envelope ejecta II: dust formation. | IACONI R., MAEDA K., NOZAWA T., et al. | ||
2020MNRAS.497.3381G | 44 | X | 1 | 36 | ~ | Searching for eclipsing binaries in the area of RA: 02h21m36s, Dec: +57*11'32''. | GUO D.-F., LI K., GAO X., et al. | ||
2020ApJ...904L..23B | 174 | X | 4 | 10 | ~ | Near-infrared spectroscopy of CK Vulpeculae: revealing a remarkably powerful blast from the past. | BANERJEE D.P.K., GEBALLE T.R., EVANS A., et al. | ||
2021AJ....161...35L | 45 | X | 1 | 26 | ~ | The investigation of seven Kepler contact binaries in the field of NGC 6819. | LI X.-Z. and LIU L. | ||
2021MNRAS.501..229W | 179 | X | 4 | 14 | ~ | ZZ Piscis Austrinus (ZZ PsA): a bright red nova progenitor and the instability mass ratio of contact binary stars. | WADHWA S.S., DE HORTA A., FILIPOVIC M.D., et al. | ||
2021A&A...646A...1K | 45 | X | 1 | 4 | ~ | Molecular remnant of Nova 1670 (CK Vulpeculae). II. A three-dimensional view of the gas distribution and velocity field. | KAMINSKI T., STEFFEN W., BUJARRABAL V., et al. | ||
2021A&A...646A.119P ![]() |
744 | A | O X C | 16 | 16 | ~ | Forbidden hugs in pandemic times. I. Luminous red nova AT 2019zhd, a new merger in M 31. | PASTORELLO A., FRASER M., VALERIN G., et al. | |
2021MNRAS.502.1299T | 45 | X | 1 | 8 | ~ | SuperWASP variable stars: classifying light curves using citizen science. | THIEMANN H.B., NORTON A.J., DICKINSON H.J., et al. | ||
2021MNRAS.502.2879G | 224 | X | 5 | 48 | ~ | CoBiToM project - I. Contact binaries towards merging. | GAZEAS K.D., LOUKAIDOU G.A., NIARCHOS P.G., et al. | ||
2020PASJ...72...66L | 44 | X | 1 | 18 | ~ | Investigation of contact binaries in the field of NGC 6811. | LI X.-Z., LIU L. and ZHANG X.-D. | ||
2021A&A...647A..93P ![]() |
179 | K | X | 4 | 25 | ~ | Forbidden hugs in pandemic times. II. The luminous red nova variety: AT 2020hat and AT 2020kog. | PASTORELLO A., VALERIN G., FRASER M., et al. | |
2021MNRAS.504.5345M | 224 | X | 5 | 1 | ~ | OCTO-TIGER: a new, 3D hydrodynamic code for stellar mergers that uses HPX parallelization. | MARCELLO D.C., SHIBER S., DE MARCO O., et al. | ||
2021ApJ...917...13S | 45 | X | 1 | 22 | ~ | Periodic fast radio bursts from luminous X-ray binaries. | SRIDHAR N., METZGER B.D., BENIAMINI P., et al. | ||
2021ApJ...917...63A | 90 | X | 2 | 23 | ~ | The blue supergiant progenitor of the supernova imposter AT 2019krl. | ANDREWS J.E., JENCSON J.E., VAN DYK S.D., et al. | ||
2021MNRAS.506.4251Z | 45 | X | 1 | 31 | ~ | The first photometric and spectroscopic analysis of the extremely low mass-ratio contact binary NSVS 5029961. | ZHENG S.-Y., LI K. and XIA Q.-Q. | ||
2021A&A...653A.127K | 90 | X | 2 | 7 | ~ | Induced differential rotation and mixing in asynchronous binary stars. | KOENIGSBERGER G., MORENO E. and LANGER N. | ||
2021A&A...653A.134B ![]() |
179 | X C | 3 | 33 | ~ | The luminous red nova AT 2018bwo in NGC 45 and its binary yellow supergiant progenitor. | BLAGORODNOVA N., KLENCKI J., PEJCHA O., et al. | ||
2021MNRAS.507..385H | 609 | A | X | 14 | 6 | ~ | Simulating a stellar contact binary merger - I. Stellar models. | HATFULL R.W.M., IVANOVA N. and LOMBARDI J.C. | |
2021RAA....21..180L | 90 | X | 2 | 18 | ~ | The deep and low-mass-ratio contact binary CSS J022914.4+044340 with a luminous additional companion. | LIU L. and LI X.-Z. | ||
2021PASP..133h4202L | 45 | X | 1 | 1 | ~ | Error analysis of the light curve solution of contact binaries based on the W-d code. | LIU L. | ||
2021AJ....162..183W ![]() |
134 | X | 3 | 7 | ~ | The infrared evolution of dust in V838 Monocerotis. | WOODWARD C.E., EVANS A., BANERJEE D.P.K., et al. | ||
2021MNRAS.508.1618R | 134 | X | 3 | 29 | ~ | Asteroseismic fingerprints of stellar mergers. | RUI N.Z. and FULLER J. | ||
2021RAA....21..235W | 358 | X | 8 | 7 | ~ | Photometric analysis of two extreme low mass ratio contact binary systems. | WADHWA S.S., TOTHILL N.F.H., DEHORTA A.Y., et al. | ||
2021A&A...655A.100M | 45 | X | 1 | 6 | ~ | The mid-infrared environment of the stellar merger remnant V838 Monocerotis. | MOBEEN M.Z., KAMINSKI T., MATTER A., et al. | ||
2021ApJ...922..122L | 287 | D | X C | 6 | 21 | ~ | Two contact binaries with mass ratios close to the minimum mass ratio. | LI K., XIA Q.-Q., KIM C.-H., et al. | |
2021RAA....21..290Y | 45 | X | 1 | 19 | ~ | New photometric studies for two deep, low-mass ratio overcontact binaries: Y Sex and V1363 Ori. | YANG Y.-G., WANG S., YUAN H.-Y., et al. | ||
2022MNRAS.511.1330G | 1008 | A | X | 22 | 11 | ~ | Faint intermediate luminosity optical transients (ILOTs) from engulfing exoplanets on the Hertzsprung gap. | GUREVICH O., BEAR E. and SOKER N. | |
2021PASJ...73.1470S | 45 | X | 1 | 59 | ~ | BM UMa: A middle shallow contact binary at pre-transition stage of evolution from W-type to A-type. | SAROTSAKULCHAI T., SOONTHORNTHUM B., POSHYACHINDA S., et al. | ||
2022AJ....163..157H ![]() |
140 | X | 3 | 55 | ~ | Period Changes of 14,127 Contact Eclipsing Binaries in the Galactic Bulge. | HONG K., WOO LEE J., PARK J.-H., et al. | ||
2022MNRAS.512.2936K | 140 | X | 3 | 16 | ~ | Stellar collisions in globular clusters: the origin of multiple stellar populations. | KRAVTSOV V., DIB S., CALDERON F.A., et al. | ||
2022ApJ...928..158B | 47 | X | 1 | 68 | ~ | Hubble Space Telescope Imaging of Luminous Extragalactic Infrared Transients and Variables from the Spitzer Infrared Intensive Transients Survey. | BOND H.E., JENCSON J.E., WHITELOCK P.A., et al. | ||
2022A&A...661A..61T | 47 | X | 1 | 7 | ~ | Stellar triples on the edge. Comprehensive overview of the evolution of destabilised triples leading to stellar and binary exotica. | TOONEN S., BOEKHOLT T.C.N. and PORTEGIES ZWART S. | ||
2022AJ....164...28B | 187 | X | 4 | 13 | ~ | Nova Sagittarii 1943 (V1148 Sgr): A Luminous Red Nova?. | BOND H.E., MINK J., DOANE A., et al. | ||
2022MNRAS.514.5528L | 47 | X | 1 | 33 | ~ | CoBiToM Project - II. Evolution of contact binary systems close to the orbital period cut-off. | LOUKAIDOU G.A., GAZEAS K.D., PALAFOUTA S., et al. | ||
2022ApJ...932...84M | 47 | X | 1 | 7 | ~ | Luminous Fast Blue Optical Transients and Type Ibn/Icn SNe from Wolf-Rayet/Black Hole Mergers. | METZGER B.D. | ||
2022ApJ...934...60B | 140 | X | 3 | 6 | ~ | A Rapidly Fading Star as a Type II Obscuring Intermediate Luminosity Optical Transient (ILOT) in a Triple-star System. | BEAR E., SOKER N. and KASHI A. | ||
2022MNRAS.515...71S | 47 | X | 1 | 22 | ~ | SN 2009ip after a decade: the luminous blue variable progenitor is now gone. | SMITH N., ANDREWS J.E., FILIPPENKO A.V., et al. | ||
2022A&A...664A..12M | 1101 | T K A | X | 23 | 4 | ~ |
Revisiting the V1309 Sco 2008 outburst spectra. Observational evidence for the theoretical modeling of stellar mergers. |
MASON E. and SHORE S.N. | |
2022ApJ...937....5S | 47 | X | 1 | 17 | ~ | Radio Nebulae from Hyperaccreting X-Ray Binaries as Common-envelope Precursors and Persistent Counterparts of Fast Radio Bursts. | SRIDHAR N. and METZGER B.D. | ||
2022ApJS..262...12K ![]() |
47 | X | 1 | 791 | ~ | A Bayesian Analysis of Physical Parameters for 783 Kepler Close Binaries: Extreme-mass-ratio Systems and a New Mass Ratio versus Period Lower Limit. | KOBULNICKY H.A., MOLNAR L.A., COOK E.M., et al. | ||
2022ApJ...937...96M | 420 | X | 9 | 14 | ~ | Dusty, Self-obscured Transients from Stellar Coalescence. | MacLEOD M., DE K. and LOEB A. | ||
2022ApJ...938....5M | 159 | D | X | 4 | 15 | ~ | Light-curve Model for Luminous Red Novae and Inferences about the Ejecta of Stellar Mergers. | MATSUMOTO T. and METZGER B.D. | |
2022AJ....164..202L ![]() |
47 | X | 1 | 35 | ~ | Extremely Low Mass Ratio Contact Binaries. I. The First Photometric and Spectroscopic Investigations of Ten Systems. | LI K., GAO X., LIU X.-Y., et al. | ||
2022MNRAS.517.1928G | 47 | X | 1 | 19 | ~ | The first photometric and orbital period investigation of an extremely low mass ratio contact binary with a sudden period change TYC 4002-2628-1. | GUO D.-F., LI K., LIU F., et al. | ||
2022A&A...666A..79F ![]() |
93 | X | 2 | 18 | ~ | SN 2019zrk, a bright SN 2009ip analog with a precursor. | FRANSSON C., SOLLERMAN J., STROTJOHANN N.L., et al. | ||
2022RAA....22j5009W | 140 | X | 3 | 21 | ~ | Photometric Analysis of Three Potential Red Nova Progenitors. | WADHWA S.S., DE HORTA A., FILIPOVIC M.D., et al. | ||
2022A&A...667A...4C ![]() |
159 | D | X C | 3 | 18 | ~ | Forbidden hugs in pandemic times III. Observations of the luminous red nova AT 2021biy in the nearby galaxy NGC 4631. | CAI Y.-Z., PASTORELLO A., FRASER M., et al. | |
2022RAA....22l5012Y | 47 | X | 1 | 14 | ~ | Light and Period Variations in Two K-type Contact Binaries: HI Leo and V523 Cas. | YANG Y., WANG S., YUAN H., et al. | ||
2023A&A...670A..44E | 50 | X | 1 | 6 | ~ | Structure and evolution of a tidally heated star. | ESTRELLA-TRUJILLO D., ARTHUR S.J., KOENIGSBERGER G., et al. |
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