PSR J0537-6910 , the SIMBAD biblio

PSR J0537-6910 , the SIMBAD biblio (238 results) C.D.S. - SIMBAD4 rel 1.7 - 2021.04.20CEST09:20:42


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Title First 3 Authors
2021MNRAS.502..390H 20       D               3 50 ~ The power-law component of the X-ray emissions from pulsar-wind nebulae and their pulsars. HSIANG J.-Y. and CHANG H.-K.
2020ApJ...888...82S 47           X         1 25 ~ HST/COS spectra of the wind lines of VFTS 102 and 285. SHEPARD K., GIES D.R., LESTER K.V., et al.
2020ApJ...895...11F 233 T     S   X         3 3 ~ First search for R-mode gravitational waves from
PSR
J0537-6910
.
FESIK L. and PAPA M.A.
2020ApJ...896...55G 140           X         3 3 ~ Discovery of delayed spin-up behavior following two large glitches in the Crab pulsar, and the statistics of such processes. GE M.Y., ZHANG S.N., LU F.J., et al.
2020ApJ...896...78M 47           X         1 5 ~ Pulsar glitch detection with a hidden Markov model. MELATOS A., DUNN L.M., SUVOROVA S., et al.
2020ApJ...898..117A 19       D               1 55 ~ IceCube search for high-energy neutrino emission from TeV Pulsar wind nebulae. AARTSEN M.G., ACKERMANN M., ADAMS J., et al.
2020ApJ...902L..12Z 93           X         2 28 ~ Characterizing astrophysical binary neutron stars with gravitational waves. ZHU X.-J. and ASHTON G.
2020MNRAS.491.4435H 93           X         2 2 ~ A correlation in the waiting-time distributions of solar flares. HUDSON H.S.
2020MNRAS.492.4837M 439       D     X   F     9 25 ~ The role of mass, equation of state, and superfluid reservoir in large pulsar glitches. MONTOLI A., ANTONELLI M. and PIZZOCHERO P.M.
2020MNRAS.494.2012P 47           X         1 91 ~ Timing of young radio pulsars - II. Braking indices and their interpretation. PARTHASARATHY A., JOHNSTON S., SHANNON R.M., et al.
2020MNRAS.494.3383C 467     A D S   X C       9 6 ~ Long-term statistics of pulsar glitches triggered by a Brownian stress accumulation process. CARLIN J.B. and MELATOS A.
2020MNRAS.496.5564C 93           X         2 3 ~ The effect of non-linear mutual friction on pulsar glitch sizes and rise times. CELORA T., KHOMENKO V., ANTONELLI M., et al.
2020MNRAS.497.1957J 47           X         1 6 ~ The Galactic population and properties of young, highly energetic pulsars. JOHNSTON S., SMITH D.A., KARASTERGIOU A., et al.
2020MNRAS.498..320H 140           X         3 4 ~ Simulating pulsar glitches: an N-body solver for superfluid vortex motion in two dimensions. HOWITT G., MELATOS A. and HASKELL B.
2020MNRAS.498.4396H 47           X         1 11 ~ Proper motion, spectra, and timing of PSR J1813-1749 using Chandra and NICER. HO W.C.G., GUILLOT S., SAZ PARKINSON P.M., et al.
2020MNRAS.498.4605H 2687 T K A     X C       56 8 ~ Return of the Big Glitcher: NICER timing and glitches of
PSR J0537-6910.
HO W.C.G., ESPINOZA C.M., ARZOUMANIAN Z., et al.
2020MNRAS.499..161H 681   K A     X C F     13 2 ~ Turbulent, pinned superfluids in neutron stars and pulsar glitch recoveries. HASKELL B., ANTONOPOULOU D. and BARENGHI C.
2020MNRAS.499.4445P 47           X         1 3 ~ Magnetic quadri-dipolar stars rotating in vacuum. PETRI J.
2019A&A...626A..50D viz 90           X         2 265 ~ A census of massive stars in NGC 346. Stellar parameters and rotational velocities. DUFTON P.L., EVANS C.J., HUNTER I., et al.
2019A&A...630A.115F 2132   K A S   X C       46 9 ~ Glitch time series and size distributions in eight prolific pulsars. FUENTES J.R., ESPINOZA C.M. and REISENEGGER A.
2019ApJ...871..246M 45           X         1 19 ~ The first ultraviolet detection of the Large Magellanic Cloud pulsar PSR B0540-69 and its multi-wavelength properties. MIGNANI R.P., SHEARER A., DE LUCA A., et al.
2019ApJ...873..120Z 18       D               1 29 ~ A universal relation between the gamma-ray luminosity and power of relativistic outflows. ZHU B.-T., ZHANG L. and FANG J.
2019ApJ...879...10A 45           X         1 225 ~ Searches for gravitational waves from known pulsars at two harmonics in 2015-2017 LIGO data. ABBOTT B.P., ABBOTT R., ABBOTT T.D., et al.
2019ApJ...879..130R 45           X         1 6 ~ Anti-glitches in the ultraluminous accreting pulsar NGC 300 ULX-1 observed with NICER. RAY P.S., GUILLOT S., HO W.C.G., et al.
2019ApJ...884...62K 45           X         1 4 ~ Inductive acceleration of ions in poynting-flux-dominated outflows. KIRK J.G. and GIACINTI G.
2019ApJ...885...37M 296     A     X         7 10 ~ Pulsar glitch activity as a state-dependent Poisson process: parameter estimation and epoch prediction. MELATOS A. and DRUMMOND L.V.
2019MNRAS.482.3736C 45           X         1 2 ~ Temporal clustering of rotational glitches in the Crab pulsar. CARLIN J.B., MELATOS A. and VUKCEVIC D.
2019MNRAS.483.4742C 179           X         4 5 ~ Generating quasi-periodic pulsar glitches using a state-dependent Poisson process. CARLIN J.B. and MELATOS A.
2019MNRAS.483.4784M 45           X         1 20 ~ A detailed study of giant pulses from PSR B1937+21 using the Large European Array for Pulsars. McKEE J.W., STAPPERS B.W., BASSA C.G., et al.
2019MNRAS.485.5319M 18       D               1 61 ~ On X-ray emission of radio pulsars. MALOV I.F. and TIMIRKEEVA M.A.
2019MNRAS.486.2507A 45           X         1 37 ~ Discovery of a pulsar-powered bow shock nebula in the Small Magellanic Cloud supernova remnant DEM S5. ALSABERI R.Z.E., MAITRA C., FILIPOVIC M.D., et al.
2019MNRAS.488.4890C 358     A D     X C       8 5 ~ Autocorrelations in pulsar glitch waiting times and sizes. CARLIN J.B. and MELATOS A.
2019MNRAS.488.5690O 45           X         1 7 ~ Full-3D relativistic MHD simulations of bow shock pulsar wind nebulae: emission and polarization. OLMI B. and BUCCIANTINI N.
2019MNRAS.490.2013C 45           X         1 11 ~ On the weak magnetic field of millisecond pulsars: does it decay before accretion? CRUCES M., REISENEGGER A. and TAURIS T.M.
2019RAA....19...30W 332       D     X         8 14 ~ The r-mode instability windows of strange stars. WANG Y.-B., ZHOU X., WANG N., et al.
2019RAA....19...46F 45           X         1 19 ~ Searching for GeV gamma-ray emission from the bulge of M31. FENG L., LI Z.-Y., SU M., et al.
2019RAA....19...72Y 90           X         2 12 ~ The symmetry energy and incompressibility constrained by the observations of glitching pulsars. YAN Y.
2019RAA....19...73L 63       D     X         2 14 ~ One large glitch in PSR B1737-30 detected with the TMRT. LIU J., YAN Z., YUAN J.-P., et al.
2019RAA....19...89E 45           X         1 5 ~ On the distributions of pulsar glitch sizes and the inter-glitch time intervals. EYA I.O., URAMA J.O. and CHUKWUDE A.E.
2018A&A...609A.110Z 44           X         1 30 ~ Multiband nonthermal radiative properties of pulsar wind nebulae. ZHU B.-T., ZHANG L. and FANG J.
2018A&A...618A..73S 566           X C       12 39 2 The VLT-FLAMES Tarantula Survey. XXIX. Massive star formation in the local 30 Doradus starburst. SCHNEIDER F.R.N., RAMIREZ-AGUDELO O.H., TRAMPER F., et al.
2018ApJ...852..123F 2028 T K A S   X C       44 14 7 The glitches and rotational history of the highly energetic young pulsar
PSR J0537-6910.
FERDMAN R.D., ARCHIBALD R.F., GOURGOULIATOS K.N., et al.
2018ApJ...863..196M 636     A     X C       14 8 2 Size-waiting-time correlations in pulsar glitches. MELATOS A., HOWITT G. and FULGENZI W.
2018ApJ...864..137A 897 T K A     X         20 3 2 The enigmatic spin evolution of
PSR
J0537-6910
r-modes, gravitational waves, and the case for continued timing.
ANDERSSON N., ANTONOPOULOU D., ESPINOZA C.M., et al.
2018ApJ...866..154G 44           X         1 11 ~ The first glitch in a central compact object pulsar: 1E 1207.4-5209. GOTTHELF E.V. and HALPERN J.P.
2018ApJ...867...60H 392           X   F     8 7 ~ Nonparametric estimation of the size and waiting time distributions of pulsar glitches. HOWITT G., MELATOS A. and DELAIGLE A.
2018MNRAS.473.1644A 1699 T K A D S   X C F     36 8 14 Pulsar spin-down: the glitch-dominated rotation of
PSR
J0537-6910
.
ANTONOPOULOU D., ESPINOZA C.M., KUIPER L., et al.
2018MNRAS.475.5403A 174             C F     2 8 1 Effects of general relativity on glitch amplitudes and pulsar mass upper bounds. ANTONELLI M., MONTOLI A. and PIZZOCHERO P.M.
2018MNRAS.478.2267W 44           X         1 5 ~ Roto-chemical heating in a neutron star with fall-back disc accretion. WEI W., LIU X.-W. and ZHENG X.-P.
2018MNRAS.478.3832S 44           X         1 6 5 The largest glitch observed in the Crab pulsar. SHAW B., LYNE A.G., STAPPERS B.W., et al.
2018MNRAS.481L.146H 87           X         2 3 ~ Crust or core? Insights from the slow rise of large glitches in the Crab pulsar. HASKELL B., KHOMENKO V., ANTONELLI M., et al.
2018NatAs...2..247T 63 4 Order parameters for the high-energy spectra of pulsars. TORRES D.F.
2017A&A...601A..29Z 45           X         1 14 38 Delay-time distribution of core-collapse supernovae with late events resulting from binary interaction. ZAPARTAS E., DE MINK S.E., IZZARD R.G., et al.
2017A&A...606A..14B 43           X         1 35 10 Binary companions of nearby supernova remnants found with Gaia. BOUBERT D., FRASER M., EVANS N.W., et al.
2017A&A...608A.131F 171           X C       3 8 9 The glitch activity of neutron stars. FUENTES J.R., ESPINOZA C.M., REISENEGGER A., et al.
2017ApJ...834....4T 979   K A D S   X         23 6 1 X-ray/GeV emissions from Crab-like pulsars in the LMC. TAKATA J. and CHENG K.S.
2017ApJ...834..106C 43           X         1 123 11 The Einstein@Home gamma-ray pulsar survey. I. Search methods, sensitivity, and discovery of new young gamma-ray pulsars. CLARK C.J., WU J., PLETSCH H.J., et al.
2017ApJ...834..120H 43           X         1 78 3 Differences between radio-loud and radio-quiet gamma-ray pulsars as revealed by Fermi. HUI C.Y., LEE J., TAKATA J., et al.
2017ApJ...835...29Y 187       D     X         5 301 128 A new electron-density model for estimation of pulsar and FRB distances. YAO J.M., MANCHESTER R.N. and WANG N.
2017ApJ...839...12A viz 85             C       1 208 56 First search for gravitational waves from known pulsars with Advanced LIGO. ABBOTT B.P., ABBOTT R., ABBOTT T.D., et al.
2017ApJ...840...56E 358       D     X         9 26 6 Angular momentum transfer and fractional moment of inertia in pulsar glitches. EYA I.O., URAMA J.O. and CHUKWUDE A.E.
2017ApJ...842..125Z 43           X         1 43 8 Predicting the presence of companions for stripped-envelope supernovae: the case of the broad-lined Type Ic SN 2002ap. ZAPARTAS E., DE MINK S.E., VAN DYK S.D., et al.
2017ApJ...843...42T 43           X         1 14 1 Evidence of a spectral break in the gamma-ray emission of the disk component of the Large Magellanic Cloud: a hadronic origin? TANG Q.-W., PENG F.-K., LIU R.-Y., et al.
2017MNRAS.466..147E 230       D     X C       5 26 18 New long-term braking index measurements for glitching pulsars using a glitch-template method. ESPINOZA C.M., LYNE A.G. and STAPPERS B.W.
2017MNRAS.468.2713M 60       D     X         2 12 3 On the second derivatives of the spin periods and braking indices in radio pulsars. MALOV I.
2017MNRAS.468.3031Y 43           X         1 19 3 On the detection probability of neutron star glitches. YU M. and LIU Q.-J.
2017MNRAS.469.1974E 60   K   D               2 11 1 On the new braking index of PSR B0540-69: further support for magnetic field growth of neutron stars following submergence by fallback accretion. EKSI K.Y.
2017MNRAS.470.4307F 255           X         6 10 7 Radio pulsar glitches as a state-dependent Poisson process. FULGENZI W., MELATOS A. and HUGHES B.D.
2017NatAs...1..134P 23 ~ Constraints on pulsar masses from the maximum observed glitch. PIZZOCHERO P.M., ANTONELLI M., HASKELL B., et al.
2016A&A...585A.162M viz 42           X         1 102 38 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 476       D S O X C       10 39 30 Deep view of the Large Magellanic Cloud with six years of Fermi-LAT observations. ACKERMANN M., ALBERT A., ATWOOD W.B., et al.
2016A&ARv..24....2M 42           X         1 76 ~ The extragalactic gamma-ray sky in the Fermi era. MASSARO F., THOMPSON D.J. and FERRARA E.C.
2016AJ....151..161S 42           X         1 23 5 A Chandra study of the interstellar metallicity in the Large Magellanic Cloud using supernova remnants. SCHENCK A., PARK S. and POST S.
2016ApJ...823...97C 42           X         1 10 9 The influence of quantum vacuum friction on pulsars. COELHO J.G., PEREIRA J.P. and DE ARAUJO J.C.N.
2016ApJ...827L..39M 43           X         1 10 12 A new, low braking index for the LMC pulsar B0540-69. MARSHALL F.E., GUILLEMOT L., HARDING A.K., et al.
2016ApJS..222...11S viz 43           X         1 18 24 Hubble Tarantula Treasury Project. III. Photometric catalog and resulting constraints on the progression of star formation in the 30 Doradus region. SABBI E., LENNON D.J., ANDERSON J., et al.
2016AstL...42..173Z viz 112 1 Probing Milky Way's hot gas halo density distribution using the dispersion measure of pulsars. ZHEZHER Y.V., NUGAEV E.Y. and RUBTSOV G.I.
2016MNRAS.456...55G 59       D     X         2 44 23 Constraining the braking indices of magnetars. GAO Z.F., LI X.-D., WANG N., et al.
2016MNRAS.457.1180R 393       D     X C F     8 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.459..140M viz 100       D         F     2 172 4 INTEGRAL/IBIS deep extragalactic survey: M81, LMC and 3C 273/Coma fields. MEREMINSKIY I.A., KRIVONOS R.A., LUTOVINOV A.A., et al.
2016MNRAS.459.3407S 59       D     X         2 7 4 Gravitational radiation from neutron stars deformed by crustal Hall drift. SUVOROV A.G., MASTRANO A. and GEPPERT U.
2016MNRAS.460.2186G 42           X         1 14 1 About detection of precessing circumpulsar discs. GRIMANI C.
2016MNRAS.461L..77H 44           X         1 3 8 The effect of superfluid hydrodynamics on pulsar glitch sizes and waiting times. HASKELL B.
2016MNRAS.462..941L 48           X         1 8 52 Fast radio bursts as giant pulses from young rapidly rotating pulsars. LYUTIKOV M., BURZAWA L. and POPOV S.B.
2016MNRAS.463.2932M 42           X         1 16 3 Searching for the optical counterparts of two young γ-ray pulsars. MIGNANI R.P., TESTA V., MARELLI M., et al.
2016RAA....16c..10L 184       D     X         5 29 1 Small glitches: the role of strange nuggets ? LAI X.-Y. and XU R.-X.
2015A&A...579A.131C 165           X         4 30 5 The VLT-FLAMES Tarantula survey. XX. The nature of the X-ray bright emission-line star VFTS 399. CLARK J.S., BARTLETT E.S., BROOS P.S., et al.
2015A&A...583A.117P 41         O X         1 21 3 New XMM-Newton observation of the thermally emitting isolated neutron star 2XMM J104608.7-594306. PIRES A.M., MOTCH C., TUROLLA R., et al.
2015ApJ...805...82M 46           X         1 5 29 Gammy-ray and hard X-ray emission from pulsar-aided supernovae as a probe of particle acceleration in embryonic pulsar wind nebulae. MURASE K., KASHIYAMA K., KIUCHI K., et al.
2015ApJ...807..132M 83           X         2 8 13 Persistent gravitational radiation from glitching pulsars. MELATOS A., DOUGLASS J.A. and SIMULA T.P.
2015ApJ...807L..27M 83           X         2 9 11 Discovery of a spin-down state change in the LMC pulsar B0540-69. MARSHALL F.E., GUILLEMOT L., HARDING A.K., et al.
2015ApJ...808...44F 41           X         1 14 6 Spatial and spectral modeling of the gamma-ray distribution in the Large Magellanic Cloud. FOREMAN G., CHU Y.-H., GRUENDL R., et al.
2015ApJ...810...67A 44           X         1 8 26 On the braking index of the unusual high-b rotation-powered pulsar PSR J18460258. ARCHIBALD R.F., KASPI V.M., BEARDMORE A.P., et al.
2015ApJ...810..101F 56           X         1 2 30 The spin rate of pre-collapse stellar cores: wave-driven angular momentum transport in massive stars. FULLER J., CANTIELLO M., LECOANET D., et al.
2015ApJ...811...86Y 42           X         1 5 9 Probing the rotation of core-collapse supernova with a concurrent analysis of gravitational waves and neutrinos. YOKOZAWA T., ASANO M., KAYANO T., et al.
2015MNRAS.446.1121G 19       D               1 8 31 Hall drift and the braking indices of young pulsars. GOURGOULIATOS K.N. and CUMMING A.
2015MNRAS.446.3631A 85           X         2 5 15 Gravitational wave emission from oscillating millisecond pulsars. ALFORD M.G. and SCHWENZER K.
2015MNRAS.449..933A 43           X         1 7 17 Peculiar glitch of PSR J1119-6127 and extension of the vortex creep model. AKBAL O., GUGERCINOGLU E., SASMAZ MUS S., et al.
2015MNRAS.449.3559H 51           X         1 2 20 Efficacy of crustal superfluid neutrons in pulsar glitch models. HOOKER J., NEWTON W.G. and LI B.-A.
2015MNRAS.449.3827K 2157       D S   X C       51 89 28 The soft γ-ray pulsar population: a high-energy overview. KUIPER L. and HERMSEN W.
2015MNRAS.452..845H 618   K A D     X C       15 16 21 Magnetic field growth in young glitching pulsars with a braking index. HO W.C.G.
2015Sci...347..406H 43           X         1 22 54 The exceptionally powerful TeV γ-ray emitters in the Large Magellanic Cloud. HESS COLLABORATION, ABRAMOWSKI A., AHARONIAN F., et al.
2015Sci...350..801F 5 4 20 An extremely bright gamma-ray pulsar in the Large Magellanic Cloud. FERMI-LAT COLLABORATION, ACKERMANN M., ALBERT A., et al.
2014A&A...564A..40W viz 41           X         1 378 50 The VLT-FLAMES Tarantula Survey. XIV. The O-type stellar content of 30 Doradus. WALBORN N.R., SANA H., SIMON-DIAZ S., et al.
2014ApJ...781...26A 790       D     X C       19 13 30 Gravitational wave emission and spin-down of young pulsars. ALFORD M.G. and SCHWENZER K.
2014ApJ...783...16A 1 28 37 Observations of the unidentified gamma-ray source TeV J2032+4130 by VERITAS. ALIU E., AUNE T., BEHERA B., et al.
2014ApJ...785...37B viz 42           X         1 16 29 SN 2010mb: direct evidence for a supernova interacting with a large amount of hydrogen-free circumstellar material. BEN-AMI S., GAL-YAM A., MAZZALI P.A., et al.
2014ApJ...785..119A viz 463       D     X C       11 202 77 Gravitational waves from known pulsars: results from the initial detector era. AASI J., ABADIE J., ABBOTT B.P., et al.
2014ApJ...790..103A 81             C       2 40 8 XMM-Newton observations of young and energetic pulsar J2022+3842. ARUMUGASAMY P., PAVLOV G.G. and KARGALTSEV O.
2014ApJS..213....1T viz 138       D     X C       3 68 43 The Massive Star-Forming Regions Omnibus X-ray Catalog. TOWNSLEY L.K., BROOS P.S., GARMIRE G.P., et al.
2014MNRAS.440.2755E 50           X         1 3 28 Neutron star glitches have a substantial minimum size. ESPINOZA C.M., ANTONOPOULOU D., STAPPERS B.W., et al.
2014MNRAS.443..138M 122           X         3 17 8 Is there room for highly magnetized pulsar wind nebulae among those non-detected at TeV? MARTIN J., TORRES D.F., CILLIS A., et al.
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.
2013ApJ...762...97C 40           X         1 21 5 Variability of the pulsed radio emission from the large Magellanic cloud pulsar PSR J0529-6652. CRAWFORD F., ALTEMOSE D., LI H., et al.
2013ApJ...775....2S 40           X         1 31 12 Timing observations of 27 pulsars at the pushchino observatory from 1978 to 2012. SHABANOVA T.V., PUGACHEV V.D. and LAPAEV K.A.
2013ApJ...775..124F 56       D     X         2 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.
2013ApJS..208...17A viz 58       D     X         2 207 551 The second Fermi large area telescope catalog of gamma-ray pulsars. ABDO A.A., AJELLO M., ALLAFORT A., et al.
2013MNRAS.428...50G 321     A D     X C       8 44 13 Deep hard X-ray survey of the Large Magellanic Cloud. GREBENEV S.A., LUTOVINOV A.A., TSYGANKOV S.S., et al.
2013MNRAS.428.1911W 55           X         1 2 30 Knock-on processes in superfluid vortex avalanches and pulsar glitch statistics. WARSZAWSKI L. and MELATOS A.
2013MNRAS.429..688Y 417       D     X C F     9 249 97 Detection of 107 glitches in 36 southern pulsars. YU M., MANCHESTER R.N., HOBBS G., et al.
2013MNRAS.430L..59G 177   K   D     X C       4 10 7 Relating the kick velocities of young pulsars with magnetic field growth time-scales inferred from braking indices. GUNEYDAS A. and EKSI K.Y.
2013MNRAS.433..138R 217       D     X C       5 107 14 Eight new radio pulsars in the Large Magellanic Cloud. RIDLEY J.P., CRAWFORD F., LORIMER D.R., et al.
2012A&A...545A.126M 437     A D S   X C       10 13 11 The relative and absolute timing accuracy of the EPIC-pn camera on XMM-Newton, from X-ray pulsations of the Crab and other pulsars. MARTIN-CARRILLO A., KIRSCH M.G.F., CABALLERO I., et al.
2012A&A...545L...2H viz 500   K A     X C       12 9 14 Discovery of gamma-ray emission from the extragalactic pulsar wind nebula N157B with H.E.S.S. HESS COLLABORATION, ABRAMOWSKI A., ACERO F., et al.
2012A&A...547A...9P 42           X         1 8 34 Pulsar timing irregularities and the imprint of magnetic field evolution. PONS J.A., VIGANO D. and GEPPERT U.
2012ApJ...746..105N 16       D               1 22 16 An extreme pulsar tail protruding from the Frying Pan supernova remnant. NG C.-Y., BUCCIANTINI N., GAENSLER B.M., et al.
2012ApJ...750..126M 160           X C       3 8 19 Characterizing cosmic-ray propagation in massive star-forming regions: the case of 30 Doradus and the Large Magellanic Cloud. MURPHY E.J., PORTER T.A., MOSKALENKO I.V., et al.
2012ApJ...756...27L viz 16       D               1 4346 32 Classification of X-ray sources in the XMM-Newton serendipitous source catalog. LIN D., WEBB N.A. and BARRET D.
2012ApJ...759..123S 16       D               1 25 11 DEM L241, a supernova remnant containing a high-mass X-ray binary. SEWARD F.D., CHARLES P.A., FOSTER D.L., et al.
2012MNRAS.420..658H 204           X C F     3 5 50 Modelling pulsar glitches with realistic pinning forces: a hydrodynamical approach. HASKELL B., PIZZOCHERO P.M. and SIDERY T.
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