SNR G109.1-01.0 , the SIMBAD biblio

SNR G109.1-01.0 , the SIMBAD biblio (324 results) C.D.S. - SIMBAD4 rel 1.7 - 2021.05.12CEST23:34:24


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Title First 3 Authors
2021MNRAS.502.5340M 330     A     X         7 19 ~ Non-thermal radio supernova remnants of exiled Wolf-Rayet stars. MEYER D.M.-A., POHL M., PETROV M., et al.
2020ApJ...891..137Z 485       D     X         11 51 ~ A systematic study of the dust of Galactic supernova remnants. I. The distance and the extinction. ZHAO H., JIANG B., LI J., et al.
2020ApJ...892..143L 47           X         1 11 ~ A small-scale investigation of molecular emission toward the tip of the western lobe of W50/SS 433. LIU Q.-C., CHEN Y., ZHOU P., et al.
2020ApJ...896L..42Y 140           X         3 8 ~ A radiatively quiet glitch and anti-glitch in the magnetar 1E 2259+586. YOUNES G., RAY P.S., BARING M.G., et al.
2020ApJ...902...53S 47           X         1 30 ~ ALMA CO observations of gamma-ray supernova remnant N132D in the Large Magellanic Cloud: possible evidence for shocked molecular clouds illuminated by cosmic-ray protons. SANO H., PLUCINSKY P.P., BAMBA A., et al.
2020ApJS..247...33A viz 19       D               2 5181 ~ Fermi Large Area Telescope fourth source catalog. ABDOLLAHI S., ACERO F., ACKERMANN M., et al.
2020ApJS..248...16L 345       D     X         8 53 ~ Evolutionary models for 43 Galactic supernova remnants with distances and X-ray spectra. LEAHY D.A., RANASINGHE S. and GELOWITZ M.
2020MNRAS.493.2706C 19       D               1 217 ~ A complete catalogue of dusty supernova remnants in the Galactic plane. CHAWNER H., GOMEZ H.L., MATSUURA M., et al.
2020MNRAS.493.3548M 93           X         2 15 ~ Wind nebulae and supernova remnants of very massive stars. MEYER D.M.-A., PETROV M. and POHL M.
2020MNRAS.499.1154H 47           X         1 14 ~ Formation pathway for lonely stripped-envelope supernova progenitors: implications for Cassiopeia A. HIRAI R., SATO T., PODSIADLOWSKI P., et al.
2020MNRAS.499.4174M 47           X         1 3 ~ 2D numerical study for magnetic field dependence of neutrino-driven core-collapse supernova models. MATSUMOTO J., TAKIWAKI T., KOTAKE K., et al.
2020PASJ...72...31N 47           X         1 11 ~ Discovery of annular X-ray emission centered on MAXI J1421-613: Dust-scattering X-rays? NOBUKAWA K.K., NOBUKAWA M. and YAMAUCHI S.
2019A&A...629A..51Z 269           X         6 20 ~ Spatially resolved X-ray study of supernova remnants that host magnetars: Implication of their fossil field origin. ZHOU P., VINK J., SAFI-HARB S., et al.
2019ApJ...872...31B 45           X         1 14 ~ Detailed X-ray mapping of the shocked ejecta and circumstellar medium in the Galactic core-collapse supernova remnant G292.0+1.8. BHALERAO J., PARK S., SCHENCK A., et al.
2019ApJ...874...50Z 242       D     X C       5 41 ~ Evolution of high-energy particle distribution in supernova remnants. ZENG H., XIN Y. and LIU S.
2019ApJ...884..113S 108       D       C       3 124 ~ The age evolution of the radio morphology of supernova remnants. STAFFORD J.N., LOPEZ L.A., AUCHETTL K., et al.
2019ApJ...884..162K 45           X         1 6 ~ HaloSat: a CubeSat to study the hot galactic halo. KAARET P., ZAJCZYK A., LAROCCA D.M., et al.
2019ApJ...887...47C 45           X         1 27 ~ Is the SNR HESS J1731-347 colliding with molecular clouds? CUI Y., YANG R., HE X., et al.
2019JApA...40...36G viz 18       D               1 294 ~ A revised catalogue of 294 Galactic supernova remnants. GREEN D.A.
2019MNRAS.482.1602Z 45           X         1 6 ~ Numerical simulations of supernova remnants in turbulent molecular clouds. ZHANG D. and CHEVALIER R.A.
2019MNRAS.485.5394K 63       D     X         2 118 ~ Stellar binaries that survive supernovae. KOCHANEK C.S., AUCHETTL K. and BELCZYNSKI K.
2019MNRAS.487.1426B 18       D               1 40 ~ Formation rates and evolution histories of magnetars. BENIAMINI P., HOTOKEZAKA K., VAN DER HORST A., et al.
2019MNRAS.487.5019B 224           X C F     3 13 ~ X-ray and radio studies of SNR CTB 37B hosting the magnetar CXOU J171405.7-381031. BLUMER H., SAFI-HARB S., KOTHES R., et al.
2018ApJ...852...54K 87           X         2 12 1 A radio continuum and polarization study of SNR G57.2+0.8 associated with magnetar SGR 1935+2154. KOTHES R., SUN X., GAENSLER B., et al.
2018ApJ...854...98W 44           X         1 15 5 Resonant inverse Compton scattering spectra from highly magnetized neutron stars. WADIASINGH Z., BARING M.G., GONTHIER P.L., et al.
2018ApJ...855...59U 17       D               2 53 ~ On the foundation of equipartition in supernova remnants. UROSEVIC D., PAVLOVIC M.Z. and ARBUTINA B.
2018ApJ...855...82B 279       D     X C       6 23 4 Neutron star natal kick and jets in core collapse supernovae. BEAR E. and SOKER N.
2018ApJ...863..127K 17       D               1 48 1 Progenitor mass distribution of core-collapse supernova remnants in our Galaxy and Magellanic Clouds based on elemental abundances. KATSUDA S., TAKIWAKI T., TOMINAGA N., et al.
2018ApJ...867...61Z 87             C       1 126 ~ How does the stellar wind influence the radio morphology of a supernova remnant? ZHANG M.F., TIAN W.W. and WU D.
2018MNRAS.473.1705S 3134 T K A D S   X C F     69 6 3 Kinematics of the Galactic Supernova Remnant
G109.1-1.0 (
CTB 109).
SANCHEZ-CRUCES M., ROSADO M., FUENTES-CARRERA I., et al.
2018MNRAS.474..961C 87           X         2 54 9 Systematic study of magnetar outbursts. COTI ZELATI F., REA N., PONS J.A., et al.
2018MNRAS.478..682B 87           X         2 13 2 Explaining the morphology of supernova remnant (SNR) 1987A with the jittering jets explosion mechanism. BEAR E. and SOKER N.
2017ApJ...835...30L 426           X C       9 37 10 Gamma-ray upper limits on magnetars with six years of Fermi-LAT observations. LI J., REA N., TORRES D.F., et al.
2017ApJ...843..139A 170       S     C       4 77 14 Search for extended sources in the galactic plane using six years of Fermi-Large Area Telescope Pass 8 data above 10 GeV. ACKERMANN M., AJELLO M., BALDINI L., et al.
2017ApJ...844...84H 1064     A D     X C       25 33 11 Comparing neutron star kicks to supernova remnant asymmetries. HOLLAND-ASHFORD T., LOPEZ L.A., AUCHETTL K., et al.
2017ApJS..228...12T 85           X         2 91 9 Astrochemical properties of Planck cold clumps. TATEMATSU K., LIU T., OHASHI S., et al.
2017ApJS..231....8E 230       D     X C       5 37 12 Magnetar broadband X-ray spectra correlated with magnetic fields: Suzaku archive of SGRs and AXPs Combined with NuSTAR, Swift, and RXTE. ENOTO T., SHIBATA S., KITAGUCHI T., et al.
2017ApJS..231....9K 281     A     X         7 10 6 Star formation conditions in a Planck Galactic Cold Clump, G108.84-00.81. KIM J., LEE J.-E., LIU T., et al.
2017ApJS..232...18A viz 17       D               1583 57 3FHL: the Third Catalog of Hard Fermi-LAT Sources. AJELLO M., ATWOOD W.B., BALDINI L., et al.
2017MNRAS.464.4895G 17       D               1 28 13 Learning about the magnetar Swift J1834.9-0846 from its wind nebula. GRANOT J., GILL R., YOUNES G., et al.
2017MNRAS.465..383R 145       D     X         4 35 7 On the diversity of compact objects within supernova remnants - II. Energy-loss mechanisms. ROGERS A. and SAFI-HARB S.
2017MNRAS.471.3494Z 17       D               2 195 11 The gas-to-extinction ratio and the gas distribution in the Galaxy. ZHU H., TIAN W., LI A., et al.
2017PASJ...69...40N 1175 T   A     X C       26 12 1 Study of the progenitor of the magnetar 1E 2259+586 through Suzaku observations of the associated supernova remnant
CTB 109.
NAKANO T., MURAKAMI H., FURUTA Y., et al.
2016A&A...588A.103B viz 142       D     X         4 95 65 Second ROSAT all-sky survey (2RXS) source catalogue. BOLLER T., FREYBERG M.J., TRUMPER J., et al.
2016A&A...591A..68C 43           X         1 9 13 A young supernova remnant illuminating nearby molecular clouds with cosmic rays. CUI Y., PUHLHOFER G. and SANTANGELO A.
2016ApJ...820....8S viz 17       D               4 3047 22 Classification and ranking of Fermi LAT gamma-ray sources from the 3FGL catalog using machine learning techniques. SAZ PARKINSON P.M., XU H., YU P.L.H., et al.
2016ApJ...826...66F 686       D     X C       16 18 31 Probing X-ray absorption and optical extinction in the interstellar medium using Chandra observations of supernova remnants. FOIGHT D.R., GUVER T., OZEL F., et al.
2016ApJS..224....8A viz 17       D               4 300 67 The first Fermi LAT supernova remnant catalog. ACERO F., ACKERMANN M., AJELLO M., et al.
2016MNRAS.456...55G 226       D     X         6 44 23 Constraining the braking indices of magnetars. GAO Z.F., LI X.-D., WANG N., et al.
2016MNRAS.457.1180R 17       D               2 27 8 On the diversity of compact objects within supernova remnants - I. A parametric model for magnetic field evolution. ROGERS A. and SAFI-HARB S.
2016MNRAS.458.3411T viz 17       D               2 308 6 Galactic survey of 44Ti sources with the IBIS telescope onboard INTEGRAL. TSYGANKOV S.S., KRIVONOS R.A., LUTOVINOV A.A., et al.
2016NewA...47...81I viz 100       D       C       2 202 2 Effects of variability of X-ray binaries on the X-ray luminosity functions of Milky Way. ISLAM N. and PAUL B.
2015A&A...582A..47B 1919 T   A   O X C       45 2 3 3D hydrodynamic simulations of the Galactic supernova remnant
CTB 109.
BOLTE J., SASAKI M. and BREITSCHWERDT D.
2015A&A...583A.113D 123           X         3 13 ~ Ten years of INTEGRAL observations of the hard X-ray emission from SGR 1900+14. DUCCI L., MEREGHETTI S., GOETZ D., et al.
2015ApJ...800...76S 41           X         1 23 9 On the origin of radio emission from magnetars. SZARY A., MELIKIDZE G.I. and GIL J.
2015ApJ...815...15W 82           X         2 12 5 Broadband X-ray spectral investigations of magnetars, 4U 0142+61, 1E 1841-045,1E 2259+586, AND 1E 1048.1-5937. WENG S.-S. and GOGUS E.
2015ApJS..218...23A viz 16       D               1 3128 1151 Fermi Large Area Telescope third source catalog. ACERO F., ACKERMANN M., AJELLO M., et al.
2015PASJ...67....9N 1852 T K A D     X C       44 29 10 Suzaku studies of the supernova remnant
CTB 109 hosting the magnetar 1E 2259+586.
NAKANO T., MURAKAMI H., MAKISHIMA K., et al.
2014A&ARv..22...77B 41           X         1 51 27 Nonthermal particles and photons in starburst regions and superbubbles. BYKOV A.M.
2014ApJ...783...33S 87           X         2 6 39 A CR-hydro-NEI model of the structure and broadband emission from Tycho's supernova remnant. SLANE P., LEE S.-H., ELLISON D.C., et al.
2014ApJ...784...37D 46           X         1 12 69 16 yr of RXTE monitoring of five anomalous X-ray pulsars. DIB R. and KASPI V.M.
2014ApJ...789...75V 271     A     X C       6 6 19 NuSTAR observations of the magnetar 1E 2259+586. VOGEL J.K., HASCOET R., KASPI V.M., et al.
2014ApJS..212....6O viz 142       D     X         4 58 265 The McGill magnetar catalog. OLAUSEN S.A. and KASPI V.M.
2014BASI...42...47G viz 16       D               1 294 151 A catalogue of 294 Galactic supernova remnants. GREEN D.A.
2014MNRAS.443.3586S 41           X         1 21 2 Anisotropic neutrino effect on magnetar spin: constraint on inner toroidal field. SUWA Y. and ENOTO T.
2014MNRAS.444.2910M 991       D S   X C       23 59 11 Comparing supernova remnants around strongly magnetized and canonical pulsars. MARTIN J., REA N., TORRES D.F., et al.
2014PASJ...66...14C 81           X         2 25 20 Magnetic dipole moment of soft gamma-ray repeaters and anomalous X-ray pulsars described as massive and magnetic white dwarfs. COELHO J.G. and MALHEIRO M.
2013A&A...549A..23A viz 120           X C       2 5 2 Observations of the magnetars 4U 0142+61 and 1E 2259+568 with the MAGIC telescopes. ALEKSIC J., ANTONELLI L.A., ANTORANZ P., et al.
2013A&A...552A..45S 907 T K A     X         22 22 16 Chandra observation of the Galactic supernova remnant
CTB 109 (
G109.1-1.0).
SASAKI M., PLUCINSKY P.P., GAETZ T.J., et al.
2013A&A...555A.151B 122           X         3 9 21 SGR 0418+5729, Swift J1822.3-1606, and 1E 2259+586 as massive, fast-rotating, highly magnetized white dwarfs. BOSHKAYEV K., IZZO L., RUEDA HERNANDEZ J.A., et al.
2013ApJ...766..112R 41           X         1 8 9 G306.3-0.9: a newly discovered young galactic supernova remnant. REYNOLDS M.T., LOI S.T., MURPHY T., et al.
2013ApJ...770..105J 40           X         1 12 2 CO J = 1-0 and J = 2-1 line observations of the molecular-cloud-blocked supernova remnant 3C434.1. JEONG I.-G., KOO B.-C., CHO W.-K., et al.
2013ApJ...772...31T 1124   K A D S   X C       27 52 19 Proper motions and origins of AXP 1E 2259+586 and AXP 4U 0142+61. TENDULKAR S.P., CAMERON P.B. and KULKARNI S.R.
2013ApJ...775..124F 16       D               1 98 6 Population synthesis of young isolated neutron stars: the effect of fallback disk accretion and magnetic field evolution. FU L. and LI X.-D.
2013ApJ...777...31A 16       D               2 23 9 Modified equipartition calculation for supernova remnants. Cases α = 0.5 and α = 1. ARBUTINA B., UROSEVIC D., VUCETIC M.M., et al.
2013ApJS..204....4P 16       D               1 232 30 The radio surface-brightness-to-diameter relation for Galactic supernova remnants: sample selection and robust analysis with various fitting offsets. PAVLOVIC M.Z., UROSEVIC D., VUKOTIC B., et al.
2013MNRAS.431.2645T 120           X         3 4 3 Model on pulsed GeV radiation from magnetars. TAKATA J., WANG Y., WU E.M.H., et al.
2013MNRAS.434..123V 259       D     X   F     6 67 187 Unifying the observational diversity of isolated neutron stars via magneto-thermal evolution models. VIGANO D., REA N., PONS J.A., et al.
2013MNRAS.435.3243G 16       D               1 61 3 Statistical ages and the cooling rate of X-ray dim isolated neutron stars. GILL R. and HEYL J.S.
2012ApJ...744...97L 175       D     X C       4 17 15 Constraining radio emission from magnetars. LAZARUS P., KASPI V.M., CHAMPION D.J., et al.
2012ApJ...746...79A 16       D               2 33 35 Modified equipartition calculation for supernova remnants. ARBUTINA B., UROSEVIC D., ANDJELIC M.M., et al.
2012ApJ...746L...4K 1931 T K A S   X C       46 7 25 A thorough investigation of the distance to the supernova remnant
CTB109 and its pulsar AXP J2301+5852.
KOTHES R. and FOSTER T.
2012ApJ...748L...1D 41           X         1 8 18 The proper motion of PSR J1550-5418 measured with VLBI: a second magnetar velocity measurement. DELLER A.T., CAMILO F., REYNOLDS J.E., et al.
2012ApJ...748L..12R 80               F     1 17 47 The fundamental plane for radio magnetars. REA N., PONS J.A., TORRES D.F., et al.
2012ApJ...750..156L 46           X         1 3 36 A generalized model of nonlinear diffusive shock acceleration coupled to an evolving supernova remnant. LEE S.-H., ELLISON D.C. and NAGATAKI S.
2012ApJ...751...53A 40           X         1 30 37 Multi-wavelength observations of the radio magnetar PSR J1622-4950 and discovery of its possibly associated supernova remnant. ANDERSON G.E., GAENSLER B.M., SLANE P.O., et al.
2012ApJ...755...39V 95       D       C       2 139 83 On pulsar distance measurements and their uncertainties. VERBIEST J.P.W., WEISBERG J.M., CHAEL A.A., et al.
2012ApJ...756...88C 2407 T K A S   X C       58 19 29 Fermi-LAT observations and a broadband study of supernova remnant
CTB 109.
CASTRO D., SLANE P., ELLISON D.C., et al.
2012ApJ...761...65N 40           X         1 19 17 Deep X-ray observations of the young high-magnetic-field radio pulsar J1119-6127 and supernova remnant G292.2-0.5. NG C.-Y., KASPI V.M., HO W.C.G., et al.
2012ApJ...761...76T 41           X         1 15 31 Proper motions and origins of Sgr 1806-20 and Sgr 1900+14. TENDULKAR S.P., CAMERON P.B. and KULKARNI S.R.
2012AstL...38..731Z 74 3 A search for small-scale anisotropy of PeV cosmic rays. ZOTOV M.Y. and KULIKOV G.V.
2012MNRAS.419.3109I 120           X         3 7 18 RXTE timing analysis of the anomalous X-ray pulsar 1E 2259+586. ICDEM B., BAYKAL A. and INAM S.C.
2012PASJ...64...24S 79             C       1 33 23 Evolution of supernova remnants expanding out of the dense circumstellar matter into the rarefied interstellar medium. SHIMIZU T., MASAI K. and KOYAMA K.
2012PASJ...64...56M 160           X         4 28 64 SGRs and AXPs as rotation-powered massive white dwarfs. MALHEIRO M., RUEDA J.A. and RUFFINI R.
2011A&A...536A..83S 291       D   O X C F     6 68 35 A Sino-German λ6 cm polarization survey of the Galactic plane. VII. Small supernova remnants. SUN X.H., REICH P., REICH W., et al.
2011ApJ...727...43S 39           X         1 16 20 Molecular environment and thermal X-ray spectroscopy of the semicircular young composite supernova remnant 3C 396. SU Y., YANG C., YANG J., et al.
2011ApJ...734...86C 39           X         1 14 8 An XMM-Newton study of the bright, nearby supernova remnant G296.1-0.5. CASTRO D., SLANE P.O., GAENSLER B.M., et al.
2011ApJ...740...78M 39           X         1 25 4 CANGAROO-III observation of TeV gamma rays from the unidentified gamma-ray source HESS J1614-518. MIZUKAMI T., KUBO H., YOSHIDA T., et al.
2011ApJ...743L..38L 39           X         1 12 21 The spin-down of Swift J1822.3-1606: a new galactic magnetar. LIVINGSTONE M.A., SCHOLZ P., KASPI V.M., et al.
2010ApJ...710..797R 39           X         1 10 10 Extinction and distance to anomalous X-ray pulsars from X-ray scattering halos. RIVERA-INGRAHAM A. and VAN KERKWIJK M.H.
2010ApJ...710..941H 39           X         1 24 36 Two magnetar candidates in HESS supernova remnants. HALPERN J.P. and GOTTHELF E.V.
2010ApJ...712.1147J 16       D               2 69 82 Cavity of molecular gas associated with supernova remnant 3C 397. JIANG B., CHEN Y., WANG J., et al.
2010ApJ...725.1384H 39           X         1 25 35 An energetic magnetar in HESS J1713-381/CTB 37B. HALPERN J.P. and GOTTHELF E.V.
2010MNRAS.404..289Y 39           X         1 37 36 29 glitches detected at urumqi observatory. YUAN J.P., WANG N., MANCHESTER R.N., et al.
2010MNRAS.404L...1T 2286 T   A S   X C       56 12 24 Distance to the SNR
CTB109/AXP1E2259+586 by HI absorption and self-absorption.
TIAN W.W., LEAHY D.A. and LI D.
2009AJ....137..354K 233           X C       5 7 16 Constraining the proper motions of two magnetars. KAPLAN D.L., CHATTERJEE S., HALES C.A., et al.
2009ApJ...694..376S 155           X         4 16 24 Discovery of molecular shells associated with supernova remnants. II. Kesteven 75. SU Y., CHEN Y., YANG J., et al.
2009ApJ...700..149K 40           X         1 10 27 A mid-infrared counterpart to the magnetar 1E 2259+586. KAPLAN D.L., CHAKRABARTY D., WANG Z., et al.
2009BASI...37...45G viz 15       D               2 282 274 A revised Galactic supernova remnant catalogue. GREEN D.A.
2009MNRAS.395.2257K 39           X         1 28 21 Heating and cooling of magnetars with accreted envelopes. KAMINKER A.D., POTEKHIN A.Y., YAKOVLEV D.G., et al.
2009MNRAS.400.2050G 57       D     X         2 22 144 The relation between optical extinction and hydrogen column density in the galaxy. GUVER T. and OZEL F.
2008A&A...480..439P 38           X         1 9 8 High-resolution CO observations towards the bright eastern knot of the SNR Puppis A. PARON S., DUBNER G., REYNOSO E., et al.
2008A&ARv..15..225M 20       D               1 37 421 The strongest cosmic magnets: soft gamma-ray repeaters and anomalous X-ray pulsars. MEREGHETTI S.
2008ApJ...686..520Z 116           X         3 10 28 The long-term radiative evolution of anomalous X-ray pulsar 1E 2259+586 after its 2002 outburst. ZHU W., KASPI V.M., DIB R., et al.
2008ApJ...688.1258T 39           X         1 9 26 Electrodynamics of magnetars. III. Pair creation processes in an ultrastrong magnetic field and particle heating in a dynamic magnetosphere. THOMPSON C.
2008MNRAS.387.1735M 38           X         1 7 5 Non-ideal evolution of non-axisymmetric, force-free magnetic fields in a magnetar. MASTRANO A. and MELATOS A.
2007A&A...462.1065M 13 3 Chandra X-ray counterpart of KS 1741-293. MARTI J., COMBI J.A., PEREZ-RAMIREZ D., et al.
2007A&A...465..907T 267           X C       6 15 11 Discovery of a new faint radio SNR G108.2-0.6. TIAN W.W., LEAHY D.A. and FOSTER T.J.
2007ApJ...667.1111G 2 22 92 The compact X-ray source 1E 1547.0-5408 and the radio shell G327.24-0.13: a new proposed association between a candidate magnetar and a candidate supernova remnant. GELFAND J.D. and GAENSLER B.M.
2006A&A...457.1081K 91 64 A catalogue of Galactic supernova remnants from the Canadian Galactic plane survey. I. Flux densities, spectra, and polarization characteristics. KOTHES R., FEDOTOV K., FOSTER T.J., et al.
2006ApJ...636..848F 43 32 Near-infrared and optical limits for the central X-ray point source in the Cassiopeia A supernova remnant. FESEN R.A., PAVLOV G.G. and SANWAL D.
2006ApJ...637..283B 31 29 Interaction between the supernova remnant HB 21 and molecular clouds. BYUN D.-Y., KOO B.-C., TATEMATSU K., et al.
2006ApJ...642L.149S 115 T K                 7 15 Evidence for shocked molecular gas in the galactic supernova remnant
CTB 109 (
G109.1-1.0).
SASAKI M., KOTHES R., PLUCINSKY P.P., et al.
2006ApJ...645..556K 3 21 148 Discovery of luminous pulsed hard X-ray emission from anomalous X-ray pulsars 1RXS J1708-4009, 4U 0142+61, and 1E 2259+586 by INTEGRAL and RXTE. KUIPER L., HERMSEN W., DEN HARTOG P.R., et al.
2006ApJ...650.1070D 1 26 78 Distances to anomalous X-ray pulsars using red clump stars. DURANT M. and VAN KERKWIJK M.H.
2006ApJS..165..512K 12 20 Morphological analysis of H I features. II. Wavelet-based multifractal formalism. KHALIL A., JONCAS G., NEKKA F., et al.
2006AstL...32..308K 26 1 Are radio pulsars the progenitors of anomalous X-ray pulsars and soft gamma repeaters ? KASUMOV F.K., ALLAKHVERDIEV A.O. and ASVAROV A.I.
2006MNRAS.370L..14V 42   K                 13 105 Supernova remnant energetics and magnetars: no evidence in favour of millisecond proto-neutron stars. VINK J. and KUIPER L.
2005ARep...49..242M 2 6 28 Radio emission from two anomalous X-ray pulsars. MALOFEEV V.M., MALOV O.I., TEPLYKH D.A., et al.
2005Ap.....48..330G 139 1 Searching for runaway OB stars in supernova remnants. GUSEINOV O.H., ANKAY A. and TAGIEVA S.O.
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1985ApJ...288..138M 6 19 Relativistic wind termination : jets and synchrotron nebulae. MICHEL F.C.
1985ApJ...295L..13H 14 44 The sigma-D relation for shell-like supernova remnants. HUANG Y.-L. and THADDEUS P.
1985ComAp..11...15S 45 25 Supernova remnants containing neutron stars. SEWARD F.D.
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1984MNRAS.209..449G 149 289 Statistical studies of supernova remnants. GREEN D.A.
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1983ApJ...272..609H 8 29 A large molecular cloud toward the SNR W50 and SS 433. HUANG Y.-L., DAME T.M. and THADDEUS P.
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