SNR B0505-67.9 , the SIMBAD biblio

SNR B0505-67.9 , the SIMBAD biblio (141 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.19CEST01:26:57


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Title First 3 Authors
1976MmRAS..81...89D viz 604 555 The nebular complexes of the Large and Small Magellanic Clouds. DAVIES R.D., ELLIOTT K.H. and MEABURN J.
1981ApJ...248..925L 101 432 A soft X-ray study of the Large Magellanic Cloud. LONG K.S., HELFAND D.J. and GRABELSKY D.A.
1982ApJ...261..473T 3 6 90 Optical identification of Balmer-dominated supernova remnants in the Large Magellanic Cloud. TUOHY I.R., DOPITA M.A., MATHEWSON D.S., et al.
1983ApJS...51..345M 2 28 284 Supernova remnants in the Magellanic Clouds. MATHEWSON D.S., FORD V.L., DOPITA M.A., et al.
1983IAUS..101..541M 34 16 Optical studies of supernova remnants in the Magellanic Clouds. MATHEWSON D.S., FORD V.L., DOPITA M.A., et al.
1984ApJ...281..593F 23 22 Nonequilibrium analysis of supernova remnants in the Large Magellanic Cloud. FUSCO-FEMIANO R. and PREITE-MARTINEZ A.
1984AuJPh..37..321M 1 28 142 A new look at radio supernova remnants. MILLS B.Y., TURTLE A.J., LITTLE A.G., et al.
1985MNRAS.212..975M 117 81 A search for short-period pulsars. MANCHESTER R.N., D'AMICO N. and TUOHY I.R.
1986A&A...166..257B 85 96 Properties of supernova remnants at known distances. I. Surface brightness and radio spectral index. BERKHUIJSEN E.M.
1987ApJ...313..226S 1 9 37 Gamma-ray burster counterparts : infrared. SCHAEFER B.E., CLINE T.L., DESAI U., et al.
1988AJ.....96.1874C 35 92 Environments and populations of supernova remnants in the Large Magellanic Cloud. CHU Y.H. and KENNICUTT R.C.
1988ApJ...327..156V 27 59 Classification of supernovae and their remnants. VAN DEN BERGH S.
1988PASP..100..683F 34 8 The distribution of supernova remnants in the Large Magellanic Cloud. FOREST T.A., SPENNY D.L. and JOHNSON R.W.
1991ApJ...374..475W 143 102 The detection of X-rays from the hot interstellar medium of the Large Magellanic Cloud. WANG Q., HAMILTON T., HELFAND D.J., et al.
1991ApJ...375..652S 5 7 160 Six Balmer-dominated supernova remnants. SMITH R.C., KIRSHNER R.P., BLAIR W.P., et al.
1991MNRAS.249..722Y 1 14 62 A new study of N 66 in the Small Magellanic Cloud. YE T., TURTLE A.J. and KENNICUTT R.C.
1991PASP..103..781R 13 38 Supernova-remnant shock waves close up. RAYMOND J.C.
1992ApJS...80..257E 823 245 The Einstein Slew Survey. ELVIS M., PLUMMER D., SCHACHTER J., et al.
1994ApJ...420..286S 2 5 54 High-resolution spectroscopy of Balmer-dominated shocks in the Large Magellanic Cloud. SMITH R.C., RAYMOND J.C. and LAMING J.M.
1997A&AS..125..419L viz 799 45 Obscured AGB stars in the Magellanic Clouds. I. IRAS candidates. LOUP C., ZIJLSTRA A.A., WATERS L.B.F.M., et al.
1998ApJ...504..761C 180 350 A new Σ-d relation and its application to the galactic supernova remnant distribution. CASE G.L. and BHATTACHARYA D.
1998ApJ...505..732H 2 26 171 ASCA X-ray spectroscopy of Large Magellanic Cloud supernova remnants and the metal abundances of the Large Magellanic Cloud. HUGHES J.P., HAYASHI I. and KOYAMA K.
1999A&AS..139..277H viz 814 71 A ROSAT PSPC catalogue of X-ray sources in the LMC region. HABERL F. and PIETSCH W.
1999AJ....117..238B viz 6185 135 A revised and extended catalog of Magellanic system clusters, associations, and emission nebulae. II. The Large Magellanic Cloud. BICA E.L.D., SCHMITT H.R., DUTRA C.M., et al.
1999ApJ...514..798M 20 ~ Supernova remnants in the Magellanic Clouds. II. Supernova remnant breakouts from N11L and N86. MURPHY-WILLIAMS R., CHU Y.-H., DICKEL J.R., et al.
1999ApJS..123..467W 34 85 Supernova remnants in the Magellanic Clouds. III. An X-ray atlas of Large Magellanic Cloud supernova remnants. WILLIAMS R.M., CHU Y.-H., DICKEL J.R., et al.
2000A&AS..143..391S viz 402 39 ROSAT HRI catalogue of X-ray sources in the LMC region. SASAKI M., HABERL F. and PIETSCH W.
2000AAS...197.8204G 72 T                   1 0 Fabry-perot spectroscopy and X-ray imaging of the Balmer-dominated supernova remnant
DEM 71.
GHAVAMIAN P., HUGHES J.P., RAKOWSKI C.E., et al.
2001ApJ...559..903H 17 28 Maximum energies of shock-accelerated electrons in Large Magellanic Cloud supernova remnants. HENDRICK S.P. and REYNOLDS S.P.
2001ApJS..133....1U viz 1480 79 The ASCA medium sensitivity survey (the GIS catalog project): source catalog. UEDA Y., ISHISAKI Y., TAKAHASHI T., et al.
2001ApJS..136...99P 50 13 Large-scale diffuse X-ray emission from the Large Magellanic Cloud. POINTS S.D., CHU Y.-H., SNOWDEN S.L., et al.
2001PASJ...53...99N 1 4 16 ASCA observations of the twin supernova remnants in the Large Magellanic Cloud, DEM L316. NISHIUCHI M., YOKOGAWA J., KOYAMA K., et al.
2001SSRv...99..209R 11 18 Optical and UV diagnostic of supernova remnant shocks. RAYMOND J.C.
2003A&A...406..141V 116 T K                 1 18 High resolution spectroscopy and emission line imaging of
DEM L71 with XMM-Newton.
VAN DER HEYDEN K.J., BLEEKER J.A.M., KAASTRA J.S., et al.
2003A&A...407..249S 2 10 86 High resolution spectroscopy of Balmer-dominated shocks in the RCW 86, Kepler and SN 1006 supernova remnants. SOLLERMAN J., GHAVAMIAN P., LUNDQVIST P., et al.
2003ApJ...582L..95H 117 T K                 2 45 Iron-rich ejecta in the supernova remnant
DEM L71.
HUGHES J.P., GHAVAMIAN P., RAKOWSKI C.E., et al.
2003ApJ...590..833G 111 T K                 9 33 The physics of supernova blast waves. I. Kinematics of
DEM L71 in the Large Magellanic Cloud.
GHAVAMIAN P., RAKOWSKI C.E., HUGHES J.P., et al.
2003ApJ...590..846R 111 T K                 7 40 The physics of supernova remnant blast waves. II. Electron-ion equilibration in
DEM L71 in the Large Magellanic Cloud.
RAKOWSKI C.E., GHAVAMIAN P. and HUGHES J.P.
2004PASP..116..187T 182 6 Astrophysics in 2003. (Invited review). TRIMBLE V. and ASCHWANDEN M.J.
2005ApJ...624..198B 1 8 43 Thermal X-ray emission from shocked ejecta in type Ia supernova remnants. II. Parameters affecting the spectrum. BADENES C., BORKOWSKI K.J. and BRAVO E.
2005ApJ...635.1077W 14 16 Supernova remnants in the Magellanic Clouds. VI. The DEM L316 supernova remnants. WILLIAMS R.M. and CHU Y.-H.
2005MNRAS.360...76A 24 15 Σ-D relation for supernova remnants and its dependence on the density of the interstellar medium. ARBUTINA B. and UROSEVIC D.
2005MmSAI..76..555B 7 1 Exploring the physics of type Ia supernovae through the X-ray spectra of their remnants. BADENES C., BORKOWSKI K., BRAVO E., et al.
2006ApJ...640..327S 22 11 Chandra observation of the Magellanic cloud supernova remnant 0454-67.2 in N9. SEWARD F.D., WILLIAMS R.M., CHU Y.-H., et al.
2006ApJ...642L.141B 4 7 67 Dust destruction in type Ia supernova remnants in the Large Magellanic Cloud. BORKOWSKI K.J., WILLIAMS B.J., REYNOLDS S.P., et al.
2006ApJS..165..480B 72 21 Far ultraviolet spectroscopic explorer survey of Magellanic cloud supernova remnants. BLAIR W.P., GHAVAMIAN P., SANKRIT R., et al.
2006ApJ...652.1259B 21 40 Dense, Fe-rich ejecta in supernova remnants DEM L238 and DEM L249: a new class of type Ia supernova? BORKOWSKI K.J., HENDRICK S.P. and REYNOLDS S.P.
2007ApJ...654L..69G 10 8 172 A physical relationship between electron-proton temperature equilibration and Mach number in fast collisionless shocks. GHAVAMIAN P., LAMING J.M. and RAKOWSKI C.E.
2007PASP..119..284S 28 6 O VI emission from superbubbles in the Large Magellanic Cloud. SANKRIT R. and DIXON W.V.D.
2007RMxAA..43...33V 51 1 On the magnetic field evolution in shell-like supernova remnants. VUKOTIC B., ARBUTINA B. and UROSEVIC D.
2007A&A...467..979B 76           X         2 7 17 High-resolution X-ray spectroscopy and imaging of the nuclear outflow of the starburst galaxy NGC 253. BAUER M., PIETSCH W., TRINCHIERI G., et al.
2007ApJ...662..472B 2 27 141 Are the models for type Ia supernova progenitors consistent with the properties of supernova remnants? BADENES C., HUGHES J.P., BRAVO E., et al.
2007ApJ...664..304G 38   K                 8 24 The detection of far-ultraviolet line emission from Balmer-dominated supernova remnants in the Large Magellanic Cloud. GHAVAMIAN P., BLAIR W.P., SANKRIT R., et al.
2007ApJ...665.1129K 1 11 35 A Chandra study of the lobe/interstellar medium interactions around the inner radio lobes of Centaurus A: constraints on the temperature structure and transport processes. KRAFT R.P., NULSEN P.E.J., BIRKINSHAW M., et al.
2007ApJ...665.1173P 1 5 10 Chandra X-ray study of galactic supernova remnant G299.2-2.9. PARK S., SLANE P.O., HUGHES J.P., et al.
2008ApJ...676..361H 10 14 Probing elemental abundances in SNR 1987A using XMM-Newton. HENG K., HABERL F., ASCHENBACH B., et al.
2008A&A...481..117H 15       D               2 20 12 Broad Lyα emission from supernova remnants in young galaxies. HENG K. and SUNYAEV R.A.
2008A&A...482..237K 15       D               2 38 5 Faint super-soft X-ray sources in XMM-Newton Large Magellanic Cloud fields. KAHABKA P., HABERL F., PAKULL M., et al.
2008A&A...485..777T 2 15 60 XMM-Newton observations of the supernova remnant IC 443. II. Evidence of stellar ejecta in the inner regions. TROJA E., BOCCHINO F., MICELI M., et al.
2008MNRAS.389..678B viz 15       D               2 9123 164 A general catalogue of extended objects in the Magellanic System. BICA E., BONATTO C., DUTRA C.M., et al.
2008ApJ...689.1089V 206       D     X         6 10 77 Spatial structure and collisionless electron heating in Balmer-dominated shocks. VAN ADELSBERG M., HENG K., McCRAY R., et al.
2009ApJ...690.1412W                   Z 12 23 A cosmic-ray precursor model for a Balmer-dominated shock in Tycho's supernova remnant. WAGNER A.Y., LEE J.-J., RAYMOND J.C., et al.
2009ApJ...696.2195R 1690 T K A     X C F     42 8 7 The Hα diagnostic of electron heating: the case of


DEM L71
.
RAKOWSKI C.E., GHAVAMIAN P. and LAMING J.M.
2009ApJ...700..727B 569     A D     X C F     14 25 65 The stellar ancestry of supernovae in the Magellanic Clouds. I. The most recent supernovae in the Large Magellanic Cloud. BADENES C., HARRIS J., ZARITSKY D., et al.
2008PABei..26...27L 11 0 Balmer double line produced by collisionless shock in supernova remnants. LI J.-T. and CHEN Y.
2009ApJ...706L.106L 244       D     X C F     5 27 73 Typing supernova remnants using X-ray line emission morphologies. LOPEZ L.A., RAMIREZ-RUIZ E., BADENES C., et al.
2009ApJ...707.1361T 38           X         1 16 12 Chandra ACIS survey of M33 (ChASeM33): the enigmatic X-ray emission from IC131. TULLMANN R., LONG K.S., PANNUTI T.G., et al.
2010A&A...509A..34B 15       D               1 41 22 A statistical approach to radio emission from shell-type SNRs. I. Basic ideas, techniques, and first results. BANDIERA R. and PETRUK O.
2010PASA...27...23H 344       S   X         8 26 78 Balmer-dominated shocks: A concise review. HENG K.
2010AJ....140..584D 15       D               2 68 27 Supernova remnants and star formation in the Large Magellanic Cloud. DESAI K.M., CHU Y.-H., GRUENDL R.A., et al.
2010ApJ...718L.141P viz 15       D               2 56 7 Far-ultraviolet diffuse emission from the Large Magellanic Cloud. PRADHAN A.C., PATHAK A. and MURTHY J.
2010MNRAS.407.1301B 15       D               1 87 66 On the size distribution of supernova remnants in the Magellanic clouds. BADENES C., MAOZ D. and DRAINE B.T.
2010ApJ...721.1492P 15       D               1 43 19 Non-thermal X-ray emission from the northwestern rim of the galactic supernova remnant G266.2-1.2 (RX J0852.0-4622). PANNUTI T.G., ALLEN G.E., FILIPOVIC M.D., et al.
2010PASJ...62.1301S 76             C       2 4 3 Suzaku observations of the supernova remnant N23 in the Large Magellanic Cloud. SOMEYA K., BAMBA A. and ISHIDA M.
2011ApJ...729...28J 39           X         1 19 39 Observational constraints on superbubble X-ray energy budgets. JASKOT A.E., STRICKLAND D.K., OEY M.S., et al.
2011ApJ...729...65W 39           X         1 10 23 Dusty blast waves of two young Large Magellanic Cloud supernova remnants: constraints on post-shock compression. WILLIAMS B.J., BORKOWSKI K.J., REYNOLDS S.P., et al.
2011ApJ...730...24K 117           X         3 9 38 Possible charge-exchange X-ray emission in the Cygnus loop detected with Suzaku. KATSUDA S., TSUNEMI H., MORI K., et al.
2011ApJ...731L...8L 115           X         3 9 12 SNR 0104-72.3: a remnant of a type Ia supernova in a star-forming region? LEE J.-J., PARK S., HUGHES J.P., et al.
2011ApJ...732..114L 94       D       C       3 32 133 Using the X-ray morphology of young supernova remnants to constrain explosion type, ejecta distribution, and chemical mixing. LOPEZ L.A., RAMIREZ-RUIZ E., HUPPENKOTHEN D., et al.
2011ApJ...737...85H 40           X         1 4 20 Temperature equilibration behind the shock front: an optical and X-ray study of RCW 86. HELDER E.A., VINK J. and BASSA C.G.
2011A&A...535A..11B 38           X         1 6 8 The high resolution X-ray spectrum of SNR 0506-68 using XMM-Newton. BROERSEN S., VINK J., KAASTRA J., et al.
2012AJ....143...85F 39           X         1 85 10 Physical structure and nature of supernova remnants in M101. FRANCHETTI N.A., GRUENDL R.A., CHU Y.-H., et al.
2012A&ARv..20...49V 558       D     X C       14 102 343 Supernova remnants: the X-ray perspective. VINK J.
2012ApJ...755...40P viz 15       D               1 636 137 The optical depth of H II regions in the Magellanic Clouds. PELLEGRINI E.W., OEY M.S., WINKLER P.F., et al.
2012ApJ...756...27L viz 15       D               1 4348 64 Classification of X-ray sources in the XMM-Newton serendipitous source catalog. LIN D., WEBB N.A. and BARRET D.
2012ApJ...756...49K 39           X         1 11 14 High-resolution X-ray spectroscopy of the galactic supernova remnant Puppis A with XMM-Newton/RGS. KATSUDA S., TSUNEMI H., MORI K., et al.
2012A&A...546A.109M 39           X         1 18 14 Multi-frequency study of supernova remnants in the Large Magellanic Cloud. Confirmation of the supernova remnant status of DEM L205. MAGGI P., HABERL F., BOZZETTO L.M., et al.
2013ApJ...771L..38P 55       D     X         2 17 10 Constraining explosion type of young supernova remnants using 24 µm emission morphology. PETERS C.L., LOPEZ L.A., RAMIREZ-RUIZ E., et al.
2013ApJ...774..120M 234           X         6 9 9 A new X-ray view of the supernova remnant G272.2-3.2 and its environment. McENTAFFER R.L., GRIEVES N., DEROO C., et al.
2013ApJ...779..134S 484       D     X C       12 81 15 A survey of infrared supernova remnants in the Large Magellanic Cloud. SEOK J.Y., KOO B.-C. and ONAKA T.
2014A&A...561A..76M 39           X         1 30 18 Four new X-ray-selected supernova remnants in the Large Magellanic Cloud. MAGGI P., HABERL F., KAVANAGH P.J., et al.
2014ApJ...785L..27Y 40           X         1 35 125 Discriminating the progenitor type of supernova remnants with iron K-shell emission. YAMAGUCHI H., BADENES C., PETRE R., et al.
2014ApJ...788....5L 79             C       1 28 13 Identification of a jet-driven supernova remnant in the Small Magellanic Cloud: possible evidence for the enhancement of bipolar explosions at low metallicity. LOPEZ L.A., CASTRO D., SLANE P.O., et al.
2014ApJ...790..139W 16       D               1 16 14 Spitzer observations of the Type Ia supernova remnant N103B: Kepler's older cousin? WILLIAMS B.J., BORKOWSKI K.J., REYNOLDS S.P., et al.
2014ApJ...791...50S 39           X         1 10 5 A deep Chandra observation of oxygen-rich supernova remnant B0049-73.6 in the Small Magellanic Cloud. SCHENCK A., PARK S., BURROWS D.N., et al.
2014ApJ...792L..20P 79           X         2 10 2 Asymmetry in the observed metal-rich ejecta of the galactic type Ia supernova remnant G299.2-2.9. POST S., PARK S., BADENES C., et al.
2014ApJ...792...71P 16       D               1 38 18 Search for surviving companions in type Ia supernova remnants. PAN K.-C., RICKER P.M. and TAAM R.E.
2015ApJ...799...50L 334       D S   X C       7 71 42 The influence of supernova remnants on the interstellar medium in the Large Magellanic Cloud seen at 20-600 µm wavelengths. LAKICEVIC M., VAN LOON J.Th., MEIXNER M., et al.
2015ApJ...799..101P 739 T   A     X C       17 11 6 Investigation of the progenitors of the Type Ia supernovae associated with the LMC supernova remnants 0505-67.9 and 0509-68.7. PAGNOTTA A. and SCHAEFER B.E.
2015ApJ...799..158T 16       D               2 97 44 Dust destruction rates and lifetimes in the Magellanic Clouds. TEMIM T., DWEK E., TCHERNYSHYOV K., et al.
2015MNRAS.447.2568T 119           X   F     2 20 32 The fraction of Type Ia supernovae exploding inside planetary nebulae (SNIPs). TSEBRENKO D. and SOKER N.
2015ApJ...805..150F 40           X         1 18 18 Single-degenerate type Ia supernovae are preferentially overluminous. FISHER R. and JUMPER K.
2015ApJ...805..152R 79           X         2 4 5 Carbon, helium, and proton kinetic temperatures in a Cygnus loop shock wave. RAYMOND J.C., EDGAR R.J., GHAVAMIAN P., et al.
2015ApJ...808...77U 755   K A D S   X C       18 22 12 N49: the first robust discovery of recombining plasma in an extra-galactic supernova remnant. UCHIDA H., KOYAMA K. and YAMAGUCHI H.
2015ApJ...809..183X 40           X         1 35 10 Newly determined explosion center of Tycho's supernova and the implications for proposed ex-companion stars of the progenitor. XUE Z. and SCHAEFER B.E.
2015ApJ...807..100S 16       D               1 52 6 Dust cooling in supernova remnants in the Large Magellanic Cloud. SEOK J.Y., KOO B.-C. and HIRASHITA H.
2016A&A...585A.162M viz 137       D     X C       3 102 110 The population of X-ray supernova remnants in the Large Magellanic Cloud. MAGGI P., HABERL F., KAVANAGH P.J., et al.
2016A&A...586A..71A viz 17       D               2 39 70 Deep view of the Large Magellanic Cloud with six years of Fermi-LAT observations. ACKERMANN M., ALBERT A., ATWOOD W.B., et al.
2016AJ....151..161S 602     A D S   X C       14 23 10 A Chandra study of the interstellar metallicity in the Large Magellanic Cloud using supernova remnants. SCHENCK A., PARK S. and POST S.
2016PASJ...68S...9T 80           X         2 18 3 A systematic study of evolved supernova remnants in the large and small Magellanic Clouds with Suzaku. TAKEUCHI Y., YAMAGUCHI H. and TAMAGAWA T.
2017A&A...597A..65M 81             C       1 34 4 Fe K and ejecta emission in SNR G15.9+0.2 with XMM-Newton. MAGGI P. and ACERO F.
2017ApJ...837...36L 57       D     X         2 55 7 Energetics and birth rates of supernova remnants in the Large Magellanic Cloud. LEAHY D.A.
2017ApJS..230....2B 219       D     X         6 112 84 Statistical analysis of supernova remnants in the Large Magellanic Cloud. BOZZETTO L.M., FILIPOVIC M.D., VUKOTIC B., et al.
2017ApJ...851...12R 122           X         3 7 6 Ion-ion equilibration and particle distributions in a 3000 km s–1 shock in SN 1006. RAYMOND J.C., WINKLER P.F., BLAIR W.P., et al.
2018ApJ...863..120W 782     A D     X C       19 13 9 Balmer-dominated shocks exclude hot progenitors for many Type Ia supernovae. WOODS T.E., GHAVAMIAN P., BADENES C., et al.
2018ApJ...863..137O 99       D     X         3 74 3 X-ray luminosity and size relationship of supernova remnants in the LMC. OU P.-S., CHU Y.-H., MAGGI P., et al.
2018ApJ...865..151M 222       D     X C F     4 26 6 Chandrasekhar and sub-Chandrasekhar models for the X-ray emission of Type Ia supernova remnants. I. Bulk properties. MARTINEZ-RODRIGUEZ H., BADENES C., LEE S.-H., et al.
2018ApJ...866....9L 16       D               2 26 3 Evolutionary models for 15 Galactic supernova remnants with new distances. LEAHY D.A. and RANASINGHE S.
2019MNRAS.484.1317K 685       D     X C F     15 12 5 Excluding supersoft X-ray sources as progenitors for four Type Ia supernovae in the Large Magellanic Cloud. KUUTTILA J., GILFANOV M., SEITENZAHL I.R., et al.
2019ApJ...875...14F 1363 T K A S   X         31 3 1 Smoothed particle inference analysis of SNR
DEM L71.
FRANK K.A., DWARKADAS V., PANFICHI A., et al.
2019ApJ...882..135Z 100       D     X         3 20 ~ Dust destruction in nonradiative shocks. ZHU H., SLANE P., RAYMOND J., et al.
2019AJ....158..137S 42           X         1 22 ~ The X-ray-resolved supernova remnant S8 in the dwarf irregular galaxy IC 1613. SCHLEGEL E.M., PANNUTI T.G., LOZINSKAYA T., et al.
2019ApJ...886...99L viz 2342     A D S   X C       55 15 20 Search for surviving companions of progenitors of young LMC SN Ia remnants. LI C.-J., KERZENDORF W.E., CHU Y.-H., et al.
2020ApJ...897...12A 43           X         1 8 ~ Evidence for resonance scattering in the X-ray grating spectrum of the supernova remnant N49. AMANO Y., UCHIDA H., TANAKA T., et al.
2020ApJ...897...62F 43           X         1 14 4 Element stratification in the middle-aged SN Ia remnant G344.7-0.1. FUKUSHIMA K., YAMAGUCHI H., SLANE P.O., et al.
2020ApJ...900..149L 102       D     X         3 38 ~ Searching for Balmer-dominated Type Ia supernova remnants in M33. LIN C.D.-J., CHU Y.-H., OU P.-S., et al.
2020ApJ...904..175S 44           X         1 5 8 Analysis of XMM-Newton observations of supernova remnant W49B and clues to the progenitor. SIEGEL J., DWARKADAS V.V., FRANK K.A., et al.
2021ApJ...922...67S 871     A D S   X C       19 17 3 Can the Fe K-alpha line reliably predict supernova remnant progenitors? SIEGEL J., DWARKADAS V.V., FRANK K.A., et al.
2021ApJ...923..141L 1915     A D S   X C       43 22 5 Forbidden line emission from Type Ia supernova remnants containing Balmer-dominated shells. LI C.-J., CHU Y.-H., RAYMOND J.C., et al.
2022MNRAS.511.5018A 2626 T K A S   X C       56 3 3 Spatially Resolved Chandra Spectroscopy of Supernova Remnant
DEM L71 in the Large Magellanic Cloud.
ALAN N. and BILIR S.
2022ApJ...928..146L 90           X         2 11 8 Signatures of a Surviving Helium-star Companion in Type Ia Supernovae and Constraints on the Progenitor Companion of SN 2011fe. LIU Z.-W., ROPKE F.K. and ZENG Y.
2022MNRAS.513.2369S 555       D     X C F     11 28 2 Linking the properties of accreting white dwarfs with the ionization state of their ambient medium. SOUROPANIS D., CHIOTELLIS A., BOUMIS P., et al.
2022MNRAS.514..728A 45           X         1 104 2 An exploration of X-ray Supernova remnants in the Milky Way and nearby galaxies. ALBERT C. and DWARKADAS V.V.
2022RAA....22c5025S 90           X         2 16 7 Common Envelope to Explosion Delay time Distribution (CEEDTD) of Type Ia Supernovae. SOKER N.
2022ApJ...933..101T 45           X         1 5 2 Charge Exchange X-Ray Emission Detected in Multiple Shells of Supernova Remnant G296.1-0.5. TANAKA Y., UCHIDA H., TANAKA T., et al.
2022MNRAS.515.1676C 108       D     X         3 72 ~ High-energy γ-ray detection of supernova remnants in the Large Magellanic Cloud. CAMPANA R., MASSARO E., BOCCHINO F., et al.
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