PSR J1549-4848 , the SIMBAD biblio

PSR J1549-4848 , the SIMBAD biblio (47 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.20CEST01:30:07


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Title First 3 Authors
1996MNRAS.279.1235M 219 161 The Parkes southern pulsar survey - I. Observing and data analysis systems and initial results. MANCHESTER R.N., LYNE A.G., D'AMICO N., et al.
1998MNRAS.295..280M 66 47 Polarization observations of 66 southern pulsars. MANCHESTER R.N., HAN J.L. and QIAO G.J.
1998MNRAS.297...28D 86 37 The Parkes Southern Pulsar Survey - III. Timing of long-period pulsars. D'AMICO N., STAPPERS B.W., BAILES M., et al.
1999MNRAS.306..371H 74 173 Pulsar rotation measures and the magnetic structure of our Galaxy. HAN J.L., MANCHESTER R.N. and QIAO G.J.
2000MNRAS.317..843W 50 128 Glitches in southern pulsars. WANG N., MANCHESTER R.N., PACE R.T., et al.
2001MNRAS.325..187L 5 1 17 Cyclotron absorption of radio emission within pulsar magnetospheres. LUO Q. and MELROSE D.B.
2002ARep...46..451K viz 542 2 A comparative analysis of the integrated radio luminosities of normal and millisecond pulsars. KUZ'MIN A.D.
2008MNRAS.387.1755W 15       D               1 29 43 The population of pulsars with interpulses and the implications for beam evolution. WELTEVREDE P. and JOHNSTON S.
2008MNRAS.388..261J 15       D               1 67 23 Multifrequency integrated profiles of pulsars. JOHNSTON S., KARASTERGIOU A., MITRA D., et al.
2008A&A...492..923S viz 15       D               2 271 100 Pulsar timing for the Fermi gamma-ray space telescope. SMITH D.A., GUILLEMOT L., CAMILO F., et al.
2008MNRAS.391.1210W viz 15       D     X         1 355 115 Profile and polarization characteristics of energetic pulsars. WELTEVREDE P. and JOHNSTON S.
2009ApJ...695L.115P 76             C       1 40 60 Discovery of new gamma-ray pulsars with AGILE. PELLIZZONI A., PILIA M., POSSENTI A., et al.
2010MNRAS.402..745K 397       D S   X C F     8 12 23 Polarization measurements of five pulsars with interpulses. KEITH M.J., JOHNSTON S., WELTEVREDE P., et al.
2010A&A...524A..51D 93       D       C       3 66 173 Galactic electrons and positrons at the Earth: new estimate of the primary and secondary fluxes. DELAHAYE T., LAVALLE J., LINEROS R., et al.
2010PASA...27...64W viz 15       D               2 169 56 Pulsar timing with the Parkes Radio Telescope for the Fermi Mission. WELTEVREDE P., JOHNSTON S., MANCHESTER R.N., et al.
2010APh....34...59C 24 16 Cosmic-ray electron anisotropies as a tool to discriminate between exotic and astrophysical sources. CERNUDA I.
2011MNRAS.414.1314M 15       D               1 46 19 On the pulse-width statistics in radio pulsars – I. Importance of the interpulse emission. MACIESIAK K., GIL J. and RIBEIRO V.A.R.M.
2011ApJ...738..114R 38           X         1 24 23 Sub-luminous γ-ray pulsars. ROMANI R.W., KERR M., CRAIG H.A., et al.
2011ARep...55..878M viz 15       D               1 319 8 The geometry of radio pulsar magnetospheres. MALOV I.F. and NIKITINA E.B.
2011MNRAS.417.1444M 15       D               1 202 13 On the pulse-width statistics in radio pulsars – II. Importance of the core profile components. MACIESIAK K. and GIL J.
2013MNRAS.429..688Y 16       D               1 249 173 Detection of 107 glitches in 36 southern pulsars. YU M., MANCHESTER R.N., HOBBS G., et al.
2013ApJ...769..122W 1115 T K A S   X C       26 4 6 Serendipitous discovery of an infrared bow shock near
PSR
J1549-4848
with Spitzer.
WANG Z., KAPLAN D.L., SLANE P., et al.
2013MNRAS.435.1610P 16       D               1 165 15 Dispersion measure variations in a sample of 168 pulsars. PETROFF E., KEITH M.J., JOHNSTON S., et al.
2013ARep...57..833M 48 4 The magnetospheric structure of radio pulsars with interpulses. MALOV I.F. and NIKITINA E.B.
2014ApJ...789...73W 16       D               2 71 21 A fan beam model for radio pulsars. I. Observational evidence. WANG H.G., PI F.P., ZHENG X.P., et al.
2014ApJ...793...89W 448   K   D     X C       11 10 7 Searching for debris disks around seven radio pulsars. WANG Z., NG C.-Y., WANG X., et al.
2015ApJ...811...96P 16       D               1 20 5 A Chandra search for a pulsar wind nebula. POSSELT B., SPENCE G. and PAVLOV G.G.
2016ApJ...833...28M 16       D               2 125 43 Meterwavelength single-pulse polarimetric emission survey. MITRA D., BASU R., MACIESIAK K., et al.
2017MNRAS.466.2325A 16       D               1 44 2 Statistics of interpulse radio pulsars: the key to solving the alignment/counter-alignment problem. ARZAMASSKIY L.I., BESKIN V.S. and PIROV K.K.
2017ARep...61..591N viz 376 2 Magnetic fields of radio pulsars. NIKITINA E.B. and MALOV I.F.
2017MNRAS.469.2704H 41           X         1 26 3 On the mean profiles of radio pulsars - II. Reconstruction of complex pulsar light curves and other new propagation effects. HAKOBYAN H.L., BESKIN V.S. and PHILIPPOV A.A.
2018MNRAS.473.4436J viz 16       D               1 448 126 Spectral properties of 441 radio pulsars. JANKOWSKI F., VAN STRATEN W., KEANE E.F., et al.
2018ApJ...854..162S 16       D               1 123 6 Meterwavelength Single-pulse Polarimetric Emission Survey. IV. The period dependence of component widths of pulsars. SKRZYPCZAK A., BASU R., MITRA D., et al.
2018MNRAS.474.4629J viz 16       D               1 596 85 Polarimetry of 600 pulsars from observations at 1.4 GHz with the Parkes radio telescope. JOHNSTON S. and KERR M.
2019MNRAS.489.3810P 17       D               2 87 61 Timing of young radio pulsars - I. Timing noise, periodic modulation, and proper motion. PARTHASARATHY A., SHANNON R.M., JOHNSTON S., et al.
2019MNRAS.490.4565J 351       D     X   F     8 13 ~ On the beam properties of radio pulsars with interpulse emission. JOHNSTON S. and KRAMER M.
2020MNRAS.494.2012P 85               F     1 91 34 Timing of young radio pulsars - II. Braking indices and their interpretation. PARTHASARATHY A., JOHNSTON S., SHANNON R.M., et al.
2020MNRAS.494.3899N 17       D               1 33 ~ Orthogonal pulsars as a key test for pulsar evolution. NOVOSELOV E.M., BESKIN V.S., GALISHNIKOVA A.K., et al.
2021MNRAS.501.4490K 17       D               1 287 ~ Flux density variability of 286 radio pulsars from a decade of monitoring. KUMAMOTO H., DAI S., JOHNSTON S., et al.
2021MNRAS.502.1253J 17       D               1 285 18 Two years of pulsar observations with the ultra-wide-band receiver on the Parkes radio telescope. JOHNSTON S., SOBEY C., DAI S., et al.
2021ApJ...917...48B 17       D               3 154 6 Meterwavelength Single-pulse Polarimetric Emission Survey. V. Flux density, component spectral variation, and emission states. BASU R., MITRA D. and MELIKIDZE G.I.
2022ApJ...926...41Z 18       D               1 39 ~ Geminga SNR: Possible Candidate of the Local Cosmic-Ray Factory. ZHAO B., LIU W., YUAN Q., et al.
2022MNRAS.511.3304M 18       D               1 400 6 An updated glitch rate law inferred from radio pulsars. MILLHOUSE M., MELATOS A., HOWITT G., et al.
2023MNRAS.520.4801J 19       D               2 1267 4 The Thousand-Pulsar-Array programme on MeerKAT - XI. Application of the rotating vector model. JOHNSTON S., KRAMER M., KARASTERGIOU A., et al.
2023MNRAS.520.4961O 19       D               2 274 2 Pulsar polarization: a broad-band population view with the Parkes Ultra-Wideband receiver. OSWALD L.S., JOHNSTON S., KARASTERGIOU A., et al.
2023MNRAS.521.3793E 19       D               1 126 ~ Detecting and characterizing pulsar haloes with the Cherenkov telescope array. ECKNER C., VODEB V., MARTIN P., et al.
2023MNRAS.522.6258B 19       D               1 76 ~ Imprint of magnetic obliquity in apparent spin-down of radio pulsars. BIRYUKOV A. and BESKIN G.

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