PSR B1855+09 , the SIMBAD biblio

PSR B1855+09 , the SIMBAD biblio (471 results) C.D.S. - SIMBAD4 rel 1.7 - 2020.01.22CET12:15:02


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Title First 3 Authors
2019ApJ...872..150M 19       D               2 46 ~ The NANOGrav 11 yr data set: solar wind sounding through pulsar timing. MADISON D.R., CORDES J.M., ARZOUMANIAN Z., et al.
2019ApJ...872..193L 19       D               3 48 ~ The NANOGrav 12.5 yr data set: the frequency dependence of pulse jitter in precision millisecond pulsars. LAM M.T., McLAUGHLIN M.A., ARZOUMANIAN Z., et al.
2019ApJ...879...10A 19       D               1 220 ~ 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...880..116A 93               F     2 45 ~ The NANOGrav 11 yr data set: limits on Gravitational Waves from individual supermassive black hole binaries. AGGARWAL K., ARZOUMANIAN Z., BAKER P.T., et al.
2019MNRAS.482.2588Z           X     *   1 6 ~ The minimum and maximum gravitational-wave background from supermassive binary black holes. ZHU X.-J., CUI W. and THRANE E.
2019MNRAS.488.2190L 252       D     X         6 50 ~ Correlated timing noise and high-precision pulsar timing: measuring frequency second derivatives as an example. LIU X.J., KEITH M.J., BASSA C.G., et al.
2019MNRAS.489.1543O 112       D S             6 48 ~ Arecibo 4.5/1.4/0.33-GHz polarimetric single-pulse emission survey. OLSZANSKI T.E.E., MITRA D. and RANKIN J.M.
2019RAA....19...20H 19       D               1 38 ~ The role of FAST in pulsar timing arrays. HOBBS G., DAI S., MANCHESTER R.N., et al.
2019RAA....19..100G 439       D     X C       9 7 ~ The application of co-integration theory in ensemble pulsar timescale algorithm. GAO F., TONG M.-L., GAO Y.-P., et al.
2018ApJ...855..122V 90               F     1 24 1 Reconciling optical and radio observations of the binary millisecond pulsar PSR J1640+2224. VIGELAND S.J., DELLER A.T., KAPLAN D.L., et al.
2018ApJ...859...47A 18       D               1 35 29 The NANOGrav 11 year data set: pulsar-timing constraints on the stochastic gravitational-wave background. ARZOUMANIAN Z., BAKER P.T., BRAZIER A., et al.
2018ApJ...862...47G 287       D     X         7 30 3 The NANOGrav 11 yr data set: Arecibo Observatory polarimetry and pulse microcomponents. GENTILE P.A., McLAUGHLIN M.A., DEMOREST P.B., et al.
2018ApJ...864...23L 18       D               1 85 ~ X-ray census of millisecond pulsars in the galactic field. LEE J., HUI C.Y., TAKATA J., et al.
2018ApJ...864...30H 18       D               1 89 ~ On the orbital properties of millisecond pulsar binaries. HUI C.Y., WU K., HAN Q., et al.
2018ApJ...864..162E 108       D       C       2 20 ~ Multifractal analysis of pulsar timing residuals: assessment of gravitational wave detection. EGHDAMI I., PANAHI H. and MOVAHED S.M.S.
2018ApJ...868...33L 18       D               2 50 ~ Optimizing pulsar timing array observational cadences for sensitivity to low-frequency gravitational-wave sources. LAM M.T.
2018ApJ...868..122B 18       D               2 41 ~ The NANOGrav 11-year data set: pulse profile variability. BROOK P.R., KARASTERGIOU A., McLAUGHLIN M.A., et al.
2018ApJS..235...37A 555       D     X C F     11 47 39 The NANOGrav 11-year data set: high-precision timing of 45 millisecond pulsars. ARZOUMANIAN Z., BRAZIER A., BURKE-SPOLAOR S., et al.
2018MNRAS.475...79H 18       D               1 36 4 Predicting gravitational lensing by stellar remnants. HARDING A.J., DI STEFANO R., LEPINE S., et al.
2018MNRAS.478.1377A 18       D               1 69 14 Evidence for a maximum mass cut-off in the neutron star mass distribution and constraints on the equation of state. ALSING J., SILVA H.O. and BERTI E.
2018MNRAS.478.2359L 18       D               1 65 1 High-precision pulsar timing and spin frequency second derivatives. LIU X.J., BASSA C.G. and STAPPERS B.W.
2018MNRAS.479.3393W 287       D     X   F     6 30 1 The decomposition of temporal variations of pulsar dispersion measures. WANG P.F. and HAN J.L.
2017A&A...608A..40P 17       D               3 33 15 The Sardinia Radio Telescope. From a technological project to a radio observatory. PRANDONI I., MURGIA M., TARCHI A., et al.
2017ApJ...834...35L 104       D     X         3 37 11 The NANOGrav nine-year data set: excess noise in millisecond pulsar arrival times. LAM M.T., CORDES J.M., CHATTERJEE S., et al.
2017ApJ...839...12A viz 17       D               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....9M 104       D       C       2 13 ~ A search for millisecond-pulsar radio emission from the faint quiescent soft X-ray transient 1H 1905+000. MIKHAILOV K., VAN LEEUWEN J. and JONKER P.G.
2017ApJ...841..125J 496       D     X C       11 39 17 The NANOGrav nine-year data set: measurement and analysis of variations in dispersion measures. JONES M.L., McLAUGHLIN M.A., LAM M.T., et al.
2017MNRAS.464..237S 17       D               1 18 2 The implications of a companion enhanced wind on millisecond pulsar production. SMEDLEY S.L., TOUT C.A., FERRARIO L., et al.
2017NewA...54...61B 104       D       C       2 20 7 Millisecond radio pulsars with known masses: parameter values and equation of state models. BHATTACHARYYA S., BOMBACI I., BANDYOPADHYAY D., et al.
2017RAA....17...19W 17       D               2 16 1 Statistical analyses for NANOGrav 5-year timing residuals. WANG Y., CORDES J.M., JENET F.A., et al.
2016A&A...585A.128K 17       D               3 79 44 A LOFAR census of millisecond pulsars. KONDRATIEV V.I., VERBIEST J.P.W., HESSELS J.W.T., et al.
2016ARA&A..54..401O 62       D     X         2 85 224 Masses, radii, and the equation of state of neutron stars. OZEL F. and FREIRE P.
2016ApJ...818...92M 400       D     X C       9 63 27 The NANOGrav nine-year data set: astrometric measurements of 37 millisecond pulsars. MATTHEWS A.M., NICE D.J., FONSECA E., et al.
2016ApJ...818..166L 17       D               3 38 17 The NANOGrav nine-year data set: monitoring interstellar scattering delays. LEVIN L., McLAUGHLIN M.A., JONES G., et al.
2016ApJ...819..155L 17       D               4 37 14 The NANOGrav nine-year data set: noise budget for pulsar arrival times on intraday timescales. LAM M.T., CORDES J.M., CHATTERJEE S., et al.
2016ApJ...821...13A 23       D               1 20 126 The NANOGrav nine-year data set: limits on the isotropic stochastic gravitational wave background. ARZOUMANIAN Z., BRAZIER A., BURKE-SPOLAOR S., et al.
2016ApJ...821...66L 85           X         2 36 19 Systematic and stochastic variations in pulsar dispersion measures. LAM M.T., CORDES J.M., CHATTERJEE S., et al.
2016ApJ...832..167F 361       D     X C       8 38 129 The NANOGrav nine-year data set: mass and geometric measurements of binary millisecond pulsars. FONSECA E., PENNUCCI T.T., ELLIS J.A., 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.455.1665B 86               F     1 46 58 European Pulsar Timing Array limits on continuous gravitational waves from individual supermassive slack hole binaries. BABAK S., PETITEAU A., SESANA A., et al.
2016MNRAS.455.1751R 447       D S   X   F     9 21 93 Timing analysis for 20 millisecond pulsars in the Parkes Pulsar Timing Array. REARDON D.J., HOBBS G., COLES W., et al.
2016MNRAS.455.4339T 18       D               1 20 27 A study of spatial correlations in pulsar timing array data. TIBURZI C., HOBBS G., KERR M., et al.
2016MNRAS.456.2196B 17       D               1 62 25 LEAP: the Large European Array for Pulsars. BASSA C.G., JANSSEN G.H., KARUPPUSAMY R., et al.
2016MNRAS.457.4421C 102       D         F     6 42 18 The noise properties of 42 millisecond pulsars from the European Pulsar Timing Array and their impact on gravitational-wave searches. CABALLERO R.N., LEE K.J., LENTATI L., et al.
2016MNRAS.458..868L 102       D       C       4 35 24 Prospects for high-precision pulsar timing with the new Effelsberg PSRIX backend. LAZARUS P., KARUPPUSAMY R., GRAIKOU E., et al.
2016MNRAS.458.1267V 316       D     X C       7 51 92 The International Pulsar Timing Array: First data release. VERBIEST J.P.W., LENTATI L., HOBBS G., et al.
2016MNRAS.458.2161L 315       D     X C       7 49 27 From spin noise to systematics: stochastic processes in the first International Pulsar Timing Array data release. LENTATI L., SHANNON R.M., COLES W.A., et al.
2016MNRAS.458.3341D viz 1167       D S   X C       26 80 87 High-precision timing of 42 millisecond pulsars with the European Pulsar Timing Array. DESVIGNES G., CABALLERO R.N., LENTATI L., et al.
2016MNRAS.461.1317Z 17       D               1 31 11 Detection and localization of continuous gravitational waves with pulsar timing arrays: the role of pulsar terms. ZHU X.-J., WEN L., XIONG J., et al.
2016RAA....16d...6L 17       D               1 20 ~ Detecting the errors in solar system ephemeris by pulsar timing. LI L., GUO L. and WANG G.-L.
2016yCat....1.2035M viz 17       D               14264 ~ A Catalogue of Spectroscopically Identified White Dwarfs MCCOOK G.P. and SION E.M.
2015ApJ...801..130L 19       D               1 8 16 Pulsar timing errors from asynchronous multi-frequency sampling of dispersion measure variations. LAM M.T., CORDES J.M., CHATTERJEE S., et al.
2015ApJ...806..236M 100       D       C       2 36 13 Polarized quasiperiodic structures in pulsar radio emission reflect temporal modulations of non-stationary plasma flow. MITRA D., ARJUNWADKAR M. and RANKIN J.M.
2015ApJ...810..150A 18       D               1 21 26 NANOGrav constraints on gravitational wave bursts with memory. ARZOUMANIAN Z., BRAZIER A., BURKE-SPOLAOR S., et al.
2015ApJ...813...65T 228       D     X C       5 39 96 The NANOGrav nine-year data set: observations, arrival time measurements, and analysis of 37 millisecond pulsars. THE NANOGRAV C., ARZOUMANIAN Z., BRAZIER A., et al.
2015ApJ...815..125W 85             C       1 4 6 Coherent network analysis for continuous gravitational wave signals in a pulsar timing array: pulsar phases as extrinsic parameters. WANG Y., MOHANTY S.D. and JENET F.A.
2015BaltA..24..395M viz 17       D               1 618 2 Binary star DataBase: binaries discovered in non-optical bands. MALKOV O.Y., TESSEMA S.B. and KNIAZEV A.Y.
2015MNRAS.446.1657W 18       D               2 20 37 Searching for gravitational wave memory bursts with the Parkes Pulsar Timing Array. WANG J.B., HOBBS G., COLES W., et al.
2015MNRAS.449.3223D 561       D     X C       13 25 31 A study of multifrequency polarization pulse profiles of millisecond pulsars. DAI S., HOBBS G., MANCHESTER R.N., et al.
2015MNRAS.450.2185L 17       D               1 55 14 The Parkes multibeam pulsar survey - VII. Timing of four millisecond pulsars and the underlying spin-period distribution of the Galactic millisecond pulsar population. LORIMER D.R., ESPOSITO P., MANCHESTER R.N., et al.
2015MNRAS.453.1489F 17       D               1 20 4 Intrinsic instrumental polarization and high-precision pulsar timing. FOSTER G., KARASTERGIOU A., PAULIN R., et al.
2014ApJ...781L..13T 2 15 40 Formation of the galactic millisecond pulsar triple system PSR J0337+1715–A neutron star with two orbiting white dwarfs. TAURIS T.M. and VAN DEN HEUVEL E.P.J.
2014ApJ...785..119A viz 16       D               1 202 77 Gravitational waves from known pulsars: results from the initial detector era. AASI J., ABADIE J., ABBOTT B.P., et al.
2014ApJ...788..141M 99       D     X         3 20 19 Assessing pulsar timing array sensitivity to gravitational wave bursts with memory. MADISON D.R., CORDES J.M. and CHATTERJEE S.
2014ApJ...794..141A 85           X         2 21 74 Gravitational waves from individual supermassive black hole binaries in circular orbits: limits from the north american nanohertz observatory for gravitational waves. ARZOUMANIAN Z., BRAZIER A., BURKE-SPOLAOR S., et al.
2014ApJ...794..163C 99       D     X         3 18 3 Optimization of NANOGrav's time allocation for maximum sensitivity to single sources. CHRISTY B., ANELLA R., LOMMEN A., et al.
2014ChA&A..38..294C 16       D               1 34 11 A statistical study of the mass distribution of neutron stars. CHENG Z., ZHANG C.-M., ZHAO Y.-H., et al.
2014MNRAS.437.2217S 16       D               1 84 15 The nature of millisecond pulsars with helium white dwarf companions. SMEDLEY S.L., TOUT C.A., FERRARIO L., et al.
2014MNRAS.437.3004L 483       D S   X C       10 4 58 TEMPONEST: a Bayesian approach to pulsar timing analysis. LENTATI L., ALEXANDER P., HOBSON M.P., et al.
2014MNRAS.439.2033G 140   K   D S             4 77 17 On the non-detection of γ-rays from energetic millisecond pulsars - dependence on viewing geometry. GUILLEMOT L. and TAURIS T.M.
2014MNRAS.443.1463S 17       D               1 28 48 Limitations in timing precision due to single-pulse shape variability in millisecond pulsars. SHANNON R.M., OSLOWSKI S., DAI S., et al.
2014MNRAS.445.1245Y 124           X         3 5 8 Limits on the strength of individual gravitational wave sources using high-cadence observations of PSR B1937+21. YI S., STAPPERS B.W., SANIDAS S.A., et al.
2013ApJ...762...94D 433   K   D     X C       10 19 212 Limits on the stochastic gravitational wave background from the north american nanohertz observatory for gravitational waves. DEMOREST P.B., FERDMAN R.D., GONZALEZ M.E., et al.
2013ApJ...770..145D 17       D               1 14 25 VLBI astrometry of PSR J2222-0137: a pulsar distance measured to 0.4% accuracy. DELLER A.T., BOYLES J., LORIMER D.R., et al.
2013ApJ...778...66K 62       D     X         2 34 174 The neutron star mass distribution. KIZILTAN B., KOTTAS A., DE YOREO M., et al.
2013ApJS..204...13V 17       D               1 22 36 High-fidelity radio astronomical polarimetry using a millisecond pulsar as a polarized reference source. VAN STRATEN W.
2013MNRAS.429.2161K 102       D         F     5 20 100 Measurement and correction of variations in interstellar dispersion in high-precision pulsar timing. KEITH M.J., COLES W., SHANNON R.M., et al.
2013MNRAS.434.1387L 122           X         3 55 31 The high time resolution universe pulsar survey -VIII. The galactic millisecond pulsar population. LEVIN L., BAILES M., BARSDELL B.R., et al.
2013Sci...342..334S 18 6 111 Gravitational-wave limits from pulsar timing constrain supermassive black hole evolution. SHANNON R.M., RAVI V., COLES W.A., et al.
2012ApJ...755...39V 136       D     X         4 139 83 On pulsar distance measurements and their uncertainties. VERBIEST J.P.W., WEISBERG J.M., CHAEL A.A., et al.
2012ApJ...757...55O 18       D               1 60 156 On the mass distribution and birth masses of neutron stars. OZEL F., PSALTIS D., NARAYAN R., et al.
2012ApJ...757...89D 43           X         1 7 25 Two millisecond pulsars discovered by the PALFA survey and a Shapiro delay measurement. DENEVA J.S., FREIRE P.C.C., CORDES J.M., et al.
2012ApJ...760..100C 17       D               1 16 17 A shapiro delay detection in the binary system hosting the millisecond pulsar PSR J1910-5959A. CORONGIU A., BURGAY M., POSSENTI A., et al.
2012ChA&A..36..187C 40           X         1 7 3 Research on ensemble pulsar time based on observed data. CHEN D., ZHU X.-Z. and WANG N.
2012MNRAS.421.2206D 97       D       C       2 8 12 The evolution of low-mass, close binary systems with a neutron star component: a detailed grid. DE VITO M.A. and BENVENUTO O.G.
2012MNRAS.423.2642L 16       D               1 37 34 The optimal schedule for pulsar timing array observations. LEE K.J., BASSA C.G., JANSSEN G.H., et al.
2012MNRAS.424.2213R 377       D     X C F     8 39 31 Observations of four glitches in the young pulsar J1833-1034 and study of its glitch activity. ROY J., GUPTA Y. and LEWANDOWSKI W.
2012MNRAS.425.1601T 18       D               1 52 106 Formation of millisecond pulsars with CO white dwarf companions – II. Accretion, spin-up, true ages and comparison to MSPs with He white dwarf companions. TAURIS T.M., LANGER N. and KRAMER M.
2012MNRAS.427..664S 16       D               2 74 54 Modelling the Galactic distribution of free electrons. SCHNITZELER D.H.F.M.
2012MNRAS.427.2780H 99       D         F     3 20 71 Development of a pulsar-based time-scale. HOBBS G., COLES W., MANCHESTER R.N., et al.
2012PABei..30....1Z 34 1 Recent progress in observational identifications of stellar mass black holes. ZHANG S.N.
2011A&A...527A..83Z 16       D               1 55 95 Study of measured pulsar masses and their possible conclusions. ZHANG C.M., WANG J., ZHAO Y.H., et al.
2011ARep...55..622R 422     A     X C       10 2 4 Optimal filtration and a pulsar time scale. RODIN A.E. and CHEN D.
2011ApJ...730...17B 16       D               1 30 16 Optimizing pulsar timing arrays to maximize gravitational wave single-source detection: a first cut. BURT B.J., LOMMEN A.N. and FINN L.S.
2011ApJ...743..102G 16       D               2 48 57 High-precision timing of five millisecond pulsars: space velocities, binary evolution, and equivalence principles. GONZALEZ M.E., STAIRS I.H., FERDMAN R.D., et al.
2011MNRAS.414.1679E viz 16       D               1 641 227 A study of 315 glitches in the rotation of 102 pulsars. ESPINOZA C.M., LYNE A.G., STAPPERS B.W., et al.
2011MNRAS.414.1777Y 176       D     X C       4 20 57 On detection of the stochastic gravitational-wave background using the Parkes pulsar timing array. YARDLEY D.R.B., COLES W.A., HOBBS G.B., et al.
2011MNRAS.414.2087Y 413       D S   X C F     8 32 56 Polarization observations of 20 millisecond pulsars. YAN W.M., MANCHESTER R.N., VAN STRATEN W., et al.
2011MNRAS.416.2285L 16       D               1 19 7 On the progenitors of millisecond pulsars by the recycling evolutionary channel. LIU W.-M. and CHEN W.-C.
2011MNRAS.416.2455B 40           X         1 18 35 The high time resolution universe pulsar survey – II. Discovery of five millisecond pulsars. BATES S.D., BAILES M., BHAT N.D.R., et al.
2011PABei..29...97T 2 0 Error estimation of pulsar timing based spacecraft autonomous positioning. TIAN F.
2011PASA...28..202H 16       D               1 60 33 The Parkes Observatory Pulsar Data Archive. HOBBS G., MILLER D., MANCHESTER R.N., et al.
2011RAA....11..369R 6 5 67 The astrophysical gravitational wave stochastic background. REGIMBAU T.
2011RAA....11.1457F 16       D               1 22 2 On pulsar-driven mass ejection in low-mass X-ray binaries. FU L. and LI X.-D.
2010A&A...516L...7K 16       D               1 18 20 The double degenerate system NLTT 11748. KAWKA A., VENNES S. and VACCARO T.R.
2010ApJ...713..671A viz 16       D               2 126 152 Searches for gravitational waves from known pulsars with science run 5 LIGO data. ABBOTT B.P., ABBOTT R., ACERNESE F., et al.
2010ApJ...715..335K 16       D               1 87 25 Millisecond pulsar ages: implications of binary evolution and a maximum spin limit. KIZILTAN B. and THORSETT S.E.
2010ApJ...716L.146S 42           X         1 8 61 Discovery of the eclipsing detached double white dwarf binary NLTT 11748. STEINFADT J.D.R., KAPLAN D.L., SHPORER A., et al.
2010ApJ...717.1206C 16       D               2 21 28 Scattering of pulsar radio emission by the interstellar plasma. COLES W.A., RICKETT B.J., GAO J.J., et al.
2010ApJ...718.1400F 16       D               1 31 48 Detection, localization, and characterization of gravitational wave bursts in a pulsar timing array. FINN L.S. and LOMMEN A.N.
2010ApJ...720L.201C 361     A D     X C F     8 4 63 Measuring the mass of solar system planets using pulsar timing. CHAMPION D.J., HOBBS G.B., MANCHESTER R.N., et al.
2010ChA&A..34..194Z 393           X         10 2 0 A comparison of the four algorithms of ensemble pulsar time. ZHONG C.-X. and YANG T.-G.
2010JApA...31..105N 8 11 Extracting information from the gravitational redshift of compact rotating objects. NUNEZ P.D. and NOWAKOWSKI M.
2010MNRAS.401.2552D 252       D     X C F     5 11 14 Evolution of low-mass close binary systems with a neutron star: its dependence with the initial neutron star mass. DE VITO M.A. and BENVENUTO O.G.
2010MNRAS.402.1027H 94       D         F     3 374 154 An analysis of the timing irregularities for 366 pulsars. HOBBS G., LYNE A.G. and KRAMER M.
2010MNRAS.405..509D 40           X         1 10 23 Rotational asymmetry of pulsar profiles. DYKS J., WRIGHT G.A.E. and DEMOREST P.
2010MNRAS.405..564V 16       D               4 60 37 Lutz-Kelker bias in pulsar parallax measurements. VERBIEST J.P.W., LORIMER D.R. and McLAUGHLIN M.A.
2010MNRAS.407..669Y 607       D     X C F     14 25 76 The sensitivity of the Parkes pulsar timing array to individual sources of gravitational waves. YARDLEY D.R.B., HOBBS G.B., JENET F.A., et al.
2010MNRAS.409..199F 203           X C       4 3 40 The orthometric parametrization of the Shapiro delay and an improved test of general relativity with binary pulsars. FREIRE P.C.C. and WEX N.
2009ApJ...692..511W viz 39           X         1 3631 20 Mergers of luminous early-type galaxies in the local universe and gravitational wave background. WEN Z.L., LIU F.S. and HAN J.L.
2009MNRAS.394.1945H 391           X C F     8 23 46 TEMPO2: a new pulsar timing package - III. Gravitational wave simulation. HOBBS G., JENET F., LEE K.J., et al.
2009MNRAS.400..805L 41           X         1 9 46 Generic tests of the existence of the gravitational dipole radiation and the variation of the gravitational constant. LAZARIDIS K., WEX N., JESSNER A., et al.
2009MNRAS.400..951V 486       D     X C F     11 20 110 Timing stability of millisecond pulsars and prospects for gravitational-wave detection. VERBIEST J.P.W., BAILES M., COLES W.A., et al.
2009MNRAS.400L..38S 45           X         1 2 25 Search for memory and inspiral gravitational waves from supermassive binary black holes with pulsar timing arrays. SETO N.
2009PASA...26..103H 56       D     X         2 21 45 Gravitational-wave detection using pulsars: status of the Parkes Pulsar Timing Array project. HOBBS G.B., BAILES M., BHAT N.D.R., et al.
2008A&A...490..179B 39           X         1 42 19 Densities and filling factors of the diffuse ionized gas in the Solar neighbourhood. BERKHUIJSEN E.M. and MUELLER P.
2008ARA&A..46..157W 80           X         2 21 143 Pulsating white dwarf stars and precision asteroseismology. WINGET D.E. and KEPLER S.O.
2008ApJ...679..675V 48           X         1 8 150 Precision timing of PSR J0437-4715: an accurate pulsar distance, a high pulsar mass, and a limit on the variation of Newton's gravitational constant. VERBIEST J.P.W., BAILES M., VAN STRATEN W., et al.
2008MNRAS.387.1583R 452   K A     X C F     10 2 13 Optimal filters for the construction of the ensemble pulsar time. RODIN A.E.
2007A&A...473..523V viz 77               F     1 33 50 Determination of the mass of the neutron star in SMC X-1, LMC X-4, and Cen X-3 with VLT/UVES. VAN DER MEER A., KAPER L., VAN KERKWIJK M.H., et al.
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