2E 4673 , the SIMBAD biblio

2E 4673 , the SIMBAD biblio (588 results) C.D.S. - SIMBAD4 rel 1.7 - 2020.10.24CEST15:29:52

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Title First 3 Authors
2020A&A...633A..31C 100           X         2 12 ~ The long-term enhanced brightness of the magnetar 1E 1547.0-5408. COTI ZELATI F., BORGHESE A., REA N., et al.
2020ApJ...891..137Z 50           X         1 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...893..156L 50           X         1 9 ~ Burst properties of the most recurring transient magnetar SGR J1935+2154. LIN L., GOGUS E., ROBERTS O.J., et al.
2020ApJ...895...26B 50           X         1 22 ~ A magnetic white dwarf accretion model for the anomalous X-ray pulsar 4U 0142+61. BORGES S.V., RODRIGUES C.V., COELHO J.G., et al.
2020ApJ...896L..42Y 1680 T   A     X C       32 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...900...49P 50           X         1 7 ~ An equation of state for magnetized neutron star matter and tidal deformation in neutron star mergers. PATRA N.K., MALIK T., SEN D., et al.
2020ApJS..248...16L 50           X         1 53 ~ Evolutionary models for 43 Galactic supernova remnants with distances and X-ray spectra. LEAHY D.A., RANASINGHE S. and GELOWITZ M.
2020MNRAS.493..713A 50           X         1 13 ~ Classification of pulsars with Dirichlet process Gaussian mixture model. AY F., INCE G., KAMASAK M.E., et al.
2020MNRAS.496..894G 50           X         1 3 ~ Suppression of luminosity and mass-radius relation of highly magnetized white dwarfs. GUPTA A., MUKHOPADHYAY B. and TOUT C.A.
2020MNRAS.496.3390B 200           X C       3 13 ~ Periodicity in recurrent fast radio bursts and the origin of ultralong period magnetars. BENIAMINI P., WADIASINGH Z. and METZGER B.D.
2019A&A...626A..39P 1288 T K A     X C       26 7 ~ Detailed X-ray spectroscopy of the magnetar
1E 2259+586.
2019A&A...629A..51Z 47           X         1 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...873..105E 47           X         1 6 ~ Ultra-luminous X-ray sources as super-critical propellers. ERKUT M.H., EKSI K.Y. and ALPAR M.A.
2019ApJ...879....4W 47           X         1 2 ~ Repeating fast radio bursts from magnetars with low magnetospheric twist. WADIASINGH Z. and TIMOKHIN A.
2019ApJ...882..173G 140           X         3 21 ~ X-ray monitoring of the magnetar CXOU J171405.7-381031 in supernova remnant CTB 37B. GOTTHELF E.V., HALPERN J.P., MORI K., et al.
2019ApJ...886....5S 47           X         1 14 ~ The first day in the life of a magnetar: evolution of the inclination angle, magnetic dipole moment, and braking index of millisecond magnetars during gamma-ray burst afterglows. SASMAZ MUS S., CIKINTOGLU S., AYGUN U., et al.
2019MNRAS.484.2931B 187           X   F     3 18 ~ The multi-outburst activity of the magnetar in Westerlund I. BORGHESE A., REA N., TUROLLA R., et al.
2019MNRAS.485....2C 252       D     X C       5 27 ~ Pulse frequency fluctuations of magnetars. CERRI-SERIM D., SERIM M.M., SAHINER S., et al.
2019MNRAS.485.4274H 578       D     X C       12 25 ~ A systematic study of soft X-ray pulse profiles of magnetars in quiescence. HU C.-P., NG C.-Y. and HO W.C.G.
2019MNRAS.485.5394K 65       D     X         2 118 ~ Stellar binaries that survive supernovae. KOCHANEK C.S., AUCHETTL K. and BELCZYNSKI K.
2019MNRAS.486.5323W 19       D               2 110 ~ A high magnetic field radio pulsar survey with Swift/XRT. WATANABE E., SHIBATA S., SAKAMOTO T., et al.
2019MNRAS.487.1426B 19       D               1 40 ~ Formation rates and evolution histories of magnetars. BENIAMINI P., HOTOKEZAKA K., VAN DER HORST A., et al.
2019MNRAS.487.5019B 327           X C F     5 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.
2019RAA....19...73L 47           X         1 14 ~ One large glitch in PSR B1737-30 detected with the TMRT. LIU J., YAN Z., YUAN J.-P., et al.
2018ApJ...852...86M 197       D     X         5 23 1 X-ray observations of magnetar SGR 0501+4516 from outburst to quiescence. MONG Y.-L. and NG C.-Y.
2018ApJ...854...98W 90           X         2 15 5 Resonant inverse Compton scattering spectra from highly magnetized neutron stars. WADIASINGH Z., BARING M.G., GONTHIER P.L., et al.
2018ApJ...854..161L 45           X         1 17 ~ Identification of the infrared counterpart of SGR 1935+2154 with the Hubble Space Telescope. LEVAN A., KOUVELIOTOU C. and FRUCHTER A.
2018ApJ...855...82B 18       D               1 23 4 Neutron star natal kick and jets in core collapse supernovae. BEAR E. and SOKER N.
2018ApJ...859...16A 45           X         1 10 1 Flux relaxation after two outbursts of the magnetar SGR 1627-41 and possible hard X-ray emission. AN H., CUMMING A. and KASPI V.M.
2018MNRAS.473.1705S 986           X C F     20 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 735       D S   X C       15 54 9 Systematic study of magnetar outbursts. COTI ZELATI F., REA N., PONS J.A., et al.
2018MNRAS.476.1271E 63       D     X         2 7 ~ The rotational phase dependence of magnetar bursts. ELENBAAS C., WATTS A.L. and HUPPENKOTHEN D.
2018MNRAS.480.3584D 45           X         1 9 2 Peculiar spin frequency and radio profile evolution of PSR J1119-6127 following magnetar-like X-ray bursts. DAI S., JOHNSTON S., WELTEVREDE P., et al.
2018PASJ...70...32N 18       D               1 16 ~ Energy-dependent intensity variation of the persistent X-ray emission of magnetars observed with Suzaku. NAKAGAWA Y., EBISAWA K. and ENOTO T.
2017A&A...599A..87C 87             C       1 29 6 The rotation-powered nature of some soft gamma-ray repeaters and anomalous X-ray pulsars. COELHO J.G., CACERES D.L., DE LIMA R.C.R., et al.
2017A&A...606A.145S 17       D               1 22 6 XMM-Newton spectroscopy of the accreting magnetar candidate 4U 0114+65. SANJURJO-FERRRIN G., TORREJON J.M., POSTNOV K., et al.
2017A&A...608A.147P 44           X         1 14 ~ Neutron star planets: Atmospheric processes and irradiation. PATRUNO A. and KAMA M.
2017ApJ...834..163A 105       D     X         3 5 6 Swift observations of two outbursts from the magnetar 4U0142+61. ARCHIBALD R.F., KASPI V.M., SCHOLZ P., et al.
2017ApJ...835...30L 714       D     X C       16 39 10 Gamma-ray upper limits on magnetars with six years of Fermi-LAT observations. LI J., REA N., TORRES D.F., et al.
2017ApJ...841...11T 44           X         1 5 4 A near-infrared counterpart of 2E1613.5-5053: the central source in supernova remnant RCW103. TENDULKAR S.P., KASPI V.M., ARCHIBALD R.F., et al.
2017ApJ...844...84H 44           X         1 33 11 Comparing neutron star kicks to supernova remnant asymmetries. HOLLAND-ASHFORD T., LOPEZ L.A., AUCHETTL K., et al.
2017ApJ...849...19G 62       D     X         2 13 13 The dipole magnetic field and spin-down evolutions of the high braking index pulsar PSR J1640-4631. GAO Z.-F., WANG N., SHAN H., et al.
2017ApJ...850..185Y 261           X C       5 4 3 Systematic analysis of the effects of mode conversion on thermal radiation from neutron stars. YATABE A. and YAMADA S.
2017ApJS..231....8E 1019       D     X C       23 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..232...17K viz 131           X         3 4 ~ Broadband spectral investigations of magnetar bursts. KIRMIZIBAYRAK D., SASMAZ MUS S., KANEKO Y., 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 409       D     X C       9 35 7 On the diversity of compact objects within supernova remnants - II. Energy-loss mechanisms. ROGERS A. and SAFI-HARB S.
2017MNRAS.465.4434C 653       S   X C       13 6 4 Thermal X-ray emission from massive, fast rotating, highly magnetized white dwarfs. CACERES D.L., DE CARVALHO S.M., COELHO J.G., et al.
2017MNRAS.469.2313G viz 17       D               1 43 8 Post-glitch exponential relaxation of radio pulsars and magnetars in terms of vortex creep across flux tubes. GUGERCINOGLU E.
2017MNRAS.471.1856E 44           X         1 11 1 Magnetar giant flare high-energy emission. ELENBAAS C., HUPPENKOTHEN D., OMAND C., et al.
2017MNRAS.471.4982S 44           X         1 7 5 Discovery of a glitch in the accretion-powered pulsar SXP 1062. SERIM M.M., SAHINER S., CERRI-SERIM D., et al.
2017PASJ...69...40N 810 T   A     X C       17 12 1 Study of the progenitor of the magnetar
1E 2259+586 through Suzaku observations of the associated supernova remnant CTB 109.
2016ApJ...819..153C 43           X         1 7 5 Variation of spectral and timing properties in the extended burst tails from the magnetar 4U 0142+61. CHAKRABORTY M., GOGUS E., MUS S.S., et al.
2016ApJ...829L..25G 46           X         1 8 26 Magnetar-like X-ray bursts from a rotation-powered pulsar, PSR J1119-6127. GOGUS E., LIN L., KANEKO Y., et al.
2016ApJ...831...80Y 238     A     X         6 6 2 NuSTAR observations of magnetar 1E 1048.1-5937. YANG C., ARCHIBALD R.F., VOGEL J.K., et al.
2016ApJ...832..122M 43           X         1 8 7 Why are pulsar planets rare? MARTIN R.G., LIVIO M. and PALANISWAMY D.
2016ApJ...833...59S 43           X         1 123 4 X-ray and rotational luminosity correlation and magnetic heating of radio pulsars. SHIBATA S., WATANABE E., YATSU Y., et al.
2016ApJ...833..261B 46           X         1 11 34 Magnetar heating. BELOBORODOV A.M. and LI X.
2016ApJ...833..265T 239     A     X C       5 5 7 Rotational evolution of magnetars in the presence of a fallback disk. TONG H., WANG W., LIU X.W., et al.
2016MNRAS.455L..87C 44           X         1 10 10 Low braking index of PSR J1734-3333: an interaction between fall-back disc and magnetic field? CHEN W.-C. and LI X.-D.
2016MNRAS.456...55G 1081       D     X C       25 44 23 Constraining the braking indices of magnetars. GAO Z.F., LI X.-D., WANG N., et al.
2016MNRAS.457.1180R 102       D     X         3 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.457.3922O 17       D               1 31 10 Fluctuating neutron star magnetosphere: braking indices of eight pulsars, frequency second derivatives of 222 pulsars and 15 magnetars. OU Z.W., TONG H., KOU F.F., et al.
2016MNRAS.457.4114B 400       D S   X C       8 26 7 Long-term evolution of anomalous X-ray pulsars and soft gamma repeaters. BENLI O. and ERTAN U.
2016MNRAS.458.2088P 44           X         1 9 9 The variable spin-down rate of the transient magnetar XTE J1810-197. PINTORE F., BERNARDINI F., MEREGHETTI S., et al.
2016MNRAS.458.3411T viz 17       D               1 308 6 Galactic survey of 44Ti sources with the IBIS telescope onboard INTEGRAL. TSYGANKOV S.S., KRIVONOS R.A., LUTOVINOV A.A., et al.
2016MNRAS.461.2809M 44           X         1 7 11 A glitch in the millisecond pulsar J0613-0200. McKEE J.W., JANSSEN G.H., STAPPERS B.W., et al.
2016MNRAS.463.2394D 45           X         1 8 19 Evidence for the magnetar nature of 1E 161348-5055 in RCW 103. D'AI A., EVANS P.A., BURROWS D.N., et al.
2016PASJ...68S..12M 43           X         1 8 7 Evidence for a 36 ks phase modulation in the hard X-ray pulses from the magnetar 1E 1547.0-5408. MAKISHIMA K., ENOTO T., MURAKAMI H., et al.
2016PASJ...68S..32T viz 17       D               1 196 1 The first MAXI/SSC catalog of X-ray sources in 0.7-7.0keV. TOMIDA H., UCHIDA D., TSUNEMI H., et al.
2016RAA....16....9X 17       D               1 28 6 Spindown of magnetars: quantum vacuum friction ? XIONG X.-Y., GAO C.-Y. and XU R.-X.
2016RAA....16c..10L 43           X         1 29 1 Small glitches: the role of strange nuggets ? LAI X.-Y. and XU R.-X.
2016RAA....16e...6Y 85           X         2 7 1 Reduced spin-down rate of PSR J0738?4042 explained as due to an asteroid disruption event. YU Y.-B. and HUANG Y.-F.
2015A&A...582A..47B 210         O X C       4 2 3 3D hydrodynamic simulations of the Galactic supernova remnant CTB 109. BOLTE J., SASAKI M. and BREITSCHWERDT D.
2015ApJ...800...76S 100       D     X         3 23 9 On the origin of radio emission from magnetars. SZARY A., MELIKIDZE G.I. and GIL J.
2015ApJ...801...48G 42           X         1 4 1 Mapping the surface of the magnetar 1E 1048.1-5937 in outburst and quiescence through phase-resolved X-ray spectroscopy. GUVER T., GOGUS E. and OZEL F.
2015ApJ...805...81W 418     A D     X C       10 20 6 X-ray perspective of the twisted magnetospheres of magnetars. WENG S.-S., GOGUS E., GUVER T., et al.
2015ApJ...807...93A 127           X         3 7 19 Deep NuSTAR and Swift monitoring observations of the magnetar 1E 1841-045. AN H., ARCHIBALD R.F., HASCOET R., et al.
2015ApJ...808...32T 444     A     X         11 8 12 Phase-resolved NuSTAR and Swift-XRT observations of magnetar 4U 0142+61. TENDULKAR S.P., HASCOET R., YANG C., et al.
2015ApJ...815...15W 920 T   A D     X C       21 12 5 Broadband X-ray spectral investigations of magnetars, 4U 0142+61, 1E 1841-045,
1E 2259+586, AND 1E 1048.1-5937.
2015ApJS..218...11C viz 294     A D     X         8 13 15 The five year Fermi/GBM magnetar burst catalog. COLLAZZI A.C., KOUVELIOTOU C., VAN DEN HORST A.J., et al.
2015MNRAS.449L..73G 610 T K A     X C       13 4 3 A simple mechanism for the anti-glitch observed in AXP
1E 2259+586.
2015MNRAS.453..522M 1404 T K A S   X C F     30 8 ~ Interpreting the AXP
1E 2259+586 antiglitch as a change in internal magnetization.
2015PASJ...67....9N 1881 T K A D S   X C       43 29 10 Suzaku studies of the supernova remnant CTB 109 hosting the magnetar
1E 2259+586.
2014A&A...562A..62K 42           X         1 5 9 Spectral formation in a radiative shock: application to anomalous X-ray pulsars and soft gamma-ray repeaters. KYLAFIS N.D., TRUEMPER J.E. and ERTAN U.
2014A&A...564A.107M viz 16       D               1 228 11 A thin diffuse component of the Galactic ridge X-ray emission and heating of the interstellar medium contributed by the radiation of Galactic X-ray binaries. MOLARO M., KHATRI R. and SUNYAEV R.A.
2014A&A...565A..90C 82             C       1 104 28 A VLT/FLAMES survey for massive binaries in Westerlund 1. IV. Wd1-5 - binary product and a pre-supernova companion for the magnetar CXOU J1647-45? CLARK J.S., RITCHIE B.W., NAJARRO F., et al.
2014A&ARv..22...77B 41           X         1 51 27 Nonthermal particles and photons in starburst regions and superbubbles. BYKOV A.M.
2014ARep...58..139M 5 4 The radio emission of anomalous pulsars. MALOV A.I.
2014ARep...58..217B 21 10 A new look at anomalous X-ray Pulsars. BISNOVATYI-KOGAN G.S. and IKHSANOV N.R.
2014ApJ...782L..20H 648 T K A     X C       14 3 19 Anti-glitch induced by collision of a solid body with the magnetar
1E 2259+586.
2014ApJ...783...99S 248           X         6 8 8 On the X-ray variability of magnetar 1RXS J170849.0-400910. SCHOLZ P., ARCHIBALD R.F., KASPI V.M., et al.
2014ApJ...784...37D 1404   K A D S   X C       33 12 69 16 yr of RXTE monitoring of five anomalous X-ray pulsars. DIB R. and KASPI V.M.
2014ApJ...784...86T 1487 T K A D S   X C       34 4 22 The anti-glitch of magnetar
1E 2259+586 in the wind braking scenario.
2014ApJ...784L..41H 274   K A     X         7 2 5 Glitch or anti-glitch: a bayesian view. HU Y.-M., PITKIN M., HENG I.S., et al.
2014ApJ...786...62S 209           X         5 11 39 The long-term post-outburst spin down and flux relaxation of magnetar Swift J1822.3-1606. SCHOLZ P., KASPI V.M. and CUMMING A.
2014ApJ...786...84K 46           X         1 9 52 Timing and flux evolution of the Galactic Center magnetar Sgr J1745-2900. KASPI V.M., ARCHIBALD R.F., BHALERAO V., et al.
2014ApJ...788..141M 41           X         1 20 19 Assessing pulsar timing array sensitivity to gravitational wave bursts with memory. MADISON D.R., CORDES J.M. and CHATTERJEE S.
2014ApJ...789...75V 1715 T K A     X C       40 6 19 NuSTAR observations of the magnetar
1E 2259+586.
2014ApJ...790...60A 43           X         1 8 18 NuSTAR observations of X-ray bursts from the magnetar 1E 1048.1-5937. AN H., KASPI V.M., BELOBORODOV A.M., et al.
2014ApJ...790...61S 41           X         1 12 5 Magnetic pair creation transparency in gamma-ray pulsars. STORY S.A. and BARING M.G.
2014ApJ...793...89W 148     A     X         4 10 7 Searching for debris disks around seven radio pulsars. WANG Z., NG C.-Y., WANG X., et al.
2014ApJ...797L...4K 75     A     X         2 1 9 Anti-glitches within the standard scenario of pulsar glitches. KANTOR E.M. and GUSAKOV M.E.
2014ApJS..210....8E viz 18       D               1 31 79 1SXPS: a deep Swift X-ray telescope point source catalog with light curves and spectra. EVANS P.A., OSBORNE J.P., BEARDMORE A.P., et al.
2014ApJS..212....6O viz 926       D     X C       22 58 265 The McGill magnetar catalog. OLAUSEN S.A. and KASPI V.M.
2014ApJS..215....3P 41           X         1 12 6 Herschel and Spitzer observations of slowly rotating, nearby isolated neutron stars. POSSELT B., PAVLOV G.G., POPOV S., et al.
2014GCN.16533....1G           X         6 4 GRB 140705A / SGR 1935+2154: Probable association with supernova remnant G57.2+0.8. GAENSLER B.M.
2014MNRAS.438.3243R 412     A D     X C F     9 13 2 X-ray decay lines from heavy nuclei in supernova remnants as a probe of the r-process origin and the birth periods of magnetars. RIPLEY J.L., METZGER B.D., ARCONES A., et al.
2014MNRAS.440.2916S 273     A     X         7 7 12 A glitch and an anti-glitch in the anomalous X-ray pulsar 1E 1841-045. SASMAZ MUS S., AYDIN B. and GOGUS E.
2014MNRAS.443.3586S 247     A D     X         7 21 2 Anisotropic neutrino effect on magnetar spin: constraint on inner toroidal field. SUWA Y. and ENOTO T.
2014MNRAS.444.2494O 41           X         1 6 ~ Radio emission of magnetars driven by the quasi-linear diffusion. OSMANOV Z.
2014MNRAS.444.2910M 58       D     X         2 59 11 Comparing supernova remnants around strongly magnetized and canonical pulsars. MARTIN J., REA N., TORRES D.F., et al.
2014PASJ...66...14C 41           X         1 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.
2014RAA....14...85L 43           X         1 7 15 Braking PSR J1734?3333 with a possible fall-back disk. LIU X.-W., XU R.-X., QIAO G.-J., et al.
2013A&A...549A..23A viz 934 T K A D     X C       22 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 309     A     X C       7 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 1123 T   A     X C       26 9 21 SGR 0418+5729, Swift J1822.3-1606, and
1E 2259+586 as massive, fast-rotating, highly magnetized white dwarfs.
2013ApJ...763...82A 124           X         3 12 25 Spectral and timing properties of the magnetar CXOU J164710.2-455216. AN H., KASPI V.M., ARCHIBALD R., et al.
2013ApJ...764....1O 123           X C       2 18 26 X-ray observations of high-B radio pulsars. OLAUSEN S.A., ZHU W.W., VOGEL J.K., et al.
2013ApJ...764...49T 44           X         1 9 34 An accretion model for the anomalous X-ray pulsar 4U 0142+61. TRUMPER J.E., DENNERL K., KYLAFIS N.D., et al.
2013ApJ...768..144T 465       D S   X C       10 21 51 Wind braking of magnetars. TONG H., XU R.X., SONG L.M., et al.
2013ApJ...770..103H 68       D     X         2 80 943 The nuclear spectroscopic telescope array (NuSTAR) high-energy X-ray mission. HARRISON F.A., CRAIG W.W., CHRISTENSEN F.E., et al.
2013ApJ...772...31T 2071 T K A D S   X C       49 52 19 Proper motions and origins of AXP
1E 2259+586 and AXP 4U 0142+61.
2013ApJ...772L..24R 47           X         1 4 26 A white dwarf merger as progenitor of the anomalous X-ray pulsar 4U 0142+61? RUEDA J.A., BOSHKAYEV K., IZZO L., et al.
2013ApJ...773L..17T 81           X         2 8 5 Timing noise in pulsars and magnetars and the magnetospheric moment of inertia. TSANG D. and GOURGOULIATOS K.N.
2013ApJ...775..101Z 42           X         1 6 9 The Vela pulsar and its likely counter-jet in the KsBand. ZYUZIN D., SHIBANOV Yu., DANILENKO A., et al.
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...778..156S 81           X         2 8 4 Long-term timing and glitch characteristics of anomalous X-ray pulsar 1RXS J170849.0-400910. SASMAZ MUS S. and GOGUS E.
2013MNRAS.429..688Y 16       D               2 249 97 Detection of 107 glitches in 36 southern pulsars. YU M., MANCHESTER R.N., HOBBS G., et al.
2013MNRAS.431.1136C 44           X         1 5 19 On the evolution of the radio pulsar PSR J1734-3333. CALISKAN S., ERTAN U., ALPAR M.A., et al.
2013MNRAS.431.2645T 349     A     X C       8 4 3 Model on pulsed GeV radiation from magnetars. TAKATA J., WANG Y., WU E.M.H., et al.
2013MNRAS.433.2018B 83           X         2 4 10 Thermodynamic functions of magnetized Coulomb crystals. BAIKO D.A. and YAKOVLEV D.G.
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2002GCN..1435....1C 74 T                   1 0 AXP
1E2259+586 optical observations.
2002GCN..1436....1K 74 T                   1 0 AXP
1E2259+586: quasi-simultaneous optical observation.
2002GCN..1437....1K 74 T                   1 0 SGR-like X-ray bursts from AXP
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2002GCN..1438....1K 74 T                   1 1 Gemini IR detection of AXP
1E 2259+586 post-burst.
2002IAUC.7924....3K 80 T                   1 13
1E 2259+586.
2002IAUC.7926....1K 76 T                   1 5
1E 2259+586.
2002IAUC.7926....2K 74 T                   1 0
1E 2259+586.
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