2 General Relativity Measurements from Pulsars
95
112. C.M. Will, H.W. Zaglauer, Gravitational radiation, close binary systems, and the Brans–Dicke
theory of gravity. Astrophys. J. 346, 366 (1989)
113. R.S. Lynch et al., The Green Bank telescope 350 MHz drift-scan survey II: data analysis and
the timing of 10 new pulsars, including a relativistic binary. Astrophys. J. 763, 81 (2013).
arXiv: 1209.4296
114. J. Alsing et al., Gravitational radiation from compact binary systems in the massive Brans–
Dicke theory of gravity. Phys. Rev. D 85, 064041 (2012). arXiv: 1112.4903
115. G. Esposito-Farèse, in Motion in Alternative Theories of Gravity. School on Mass (2009).
arXiv:0905.2575
116. R.D. Ferdman et al., The European pulsar timing array: current efforts and a LEAP toward
the future. Class. Quant. Gr. 27, 084014 (2010)
117. R. Smits, Pulsar science with the five hundred metre aperture spherical telescope. Astron.
Astrophys. 506, 919 (2009)
118. D.B Davidson, MeerKAT ans SKA phase 1, in Proceedings of the 10th International
Symposium on Antennas, Propagation and EM Theory (2012), p. 1279
119. R. Smits, Pulsar searches and timing with the square kilometre array. Astron. Astrophys. 493,
1161 (2009)
120. I.S. Deneva, in Elusive Neutron Star Populations: Galactic Center and Intermittent Pulsars,
Ph.D. dissertation (Cornell University, USA, 2010)
121. E. Pfahl, P. Podsiadlowski, S. Rappaport, Relativistic binary pulsars with black hole companions. Astrophys. J. 628, 343 (2005)
122. B. Devecchi, M. Colpi, M. Mapelli, A. Possenti, Millisecond pulsars around intermediatemass black holes in globular clusters. Mon. Not. R. Astron. Soc. 380, 691 (2007)
123. M. Kramer et al., Strong-field tests of gravity using pulsars and black holes. New Astr. Rev.
48, 993 (2004)
124. S.W. Hawking„ R. Penrose, The singularities of gravitational collapse and cosmology, in
Royal Society of Proceeding Series A, vol. 314 (1970), p. 529
125. R. Foster, D. Backer, Constructing a pulsar timing array. Astrophys. J. 361, 300 (1990)
126. R. Hellings, G. Downs, Upper limits on the isotropic gravitational radiation background from
pulsar timing analysis. Astrophys. J. 265, L39 (1983)
127. J. Verbiest et al., Timing stability of millisecond pulsars and prospects for gravitational-wave
detection. Mon. Not. R. Astron. Soc. 400, 951 (2009)
128. D.R.B. Yardley et al., The Sensitivity of the Parkes Pulsar timing array to individual sources
of gravitational waves. Mon. Not. R. Astron. Soc. 407, 669 (2010)
129. R. van Haasteren et al., Placing limits on the stochastic gravitational-wave background using
European timing array data. Mon. Not. R. Astron. Soc. 414(4), 3117–3128 (2011)
130. B.P. Abbott, R. Abbott, T.D. Abbott, M.R. Abernathy, F. Acernese, et al., Observation of
gravitational waves from a binary black hole merger. Phys. Rev. Lett. 116, 061102 (2016)
131. B.P. Abbott, R. Abbott, T.D. Abbott, F. Acernese, K. Ackley, et al., GW170817: observation
of gravitational waves from a binary neutron star inspiral. Phys. Rev. Lett. 119, 161101 (2017)
132. A. Sesana, A. Vecchio, Measuring the parameters of massive black hole binary systems with
pulsar timing array observations of gravitational waves. Phys. Rev. D 81, 104008 (2010)
133. X. Deng, L.S. Finn, Pulsar timing array observations of gravitational wave source timing
parallax. Mon. Not. R. Astron. Soc. 414(1), 50–58 (2011)
134. K.J. Lee, N. Wex, M. Kramer, B.W. Stappers, C.G. Bassa, et al., Gravitational wave astronomy
of single sources with a pulsar timing array. Mon. Not. R. Astron. Soc. 414, 3251 (2011)
95
112. C.M. Will, H.W. Zaglauer, Gravitational radiation, close binary systems, and the Brans–Dicke
theory of gravity. Astrophys. J. 346, 366 (1989)
113. R.S. Lynch et al., The Green Bank telescope 350 MHz drift-scan survey II: data analysis and
the timing of 10 new pulsars, including a relativistic binary. Astrophys. J. 763, 81 (2013).
arXiv: 1209.4296
114. J. Alsing et al., Gravitational radiation from compact binary systems in the massive Brans–
Dicke theory of gravity. Phys. Rev. D 85, 064041 (2012). arXiv: 1112.4903
115. G. Esposito-Farèse, in Motion in Alternative Theories of Gravity. School on Mass (2009).
arXiv:0905.2575
116. R.D. Ferdman et al., The European pulsar timing array: current efforts and a LEAP toward
the future. Class. Quant. Gr. 27, 084014 (2010)
117. R. Smits, Pulsar science with the five hundred metre aperture spherical telescope. Astron.
Astrophys. 506, 919 (2009)
118. D.B Davidson, MeerKAT ans SKA phase 1, in Proceedings of the 10th International
Symposium on Antennas, Propagation and EM Theory (2012), p. 1279
119. R. Smits, Pulsar searches and timing with the square kilometre array. Astron. Astrophys. 493,
1161 (2009)
120. I.S. Deneva, in Elusive Neutron Star Populations: Galactic Center and Intermittent Pulsars,
Ph.D. dissertation (Cornell University, USA, 2010)
121. E. Pfahl, P. Podsiadlowski, S. Rappaport, Relativistic binary pulsars with black hole companions. Astrophys. J. 628, 343 (2005)
122. B. Devecchi, M. Colpi, M. Mapelli, A. Possenti, Millisecond pulsars around intermediatemass black holes in globular clusters. Mon. Not. R. Astron. Soc. 380, 691 (2007)
123. M. Kramer et al., Strong-field tests of gravity using pulsars and black holes. New Astr. Rev.
48, 993 (2004)
124. S.W. Hawking„ R. Penrose, The singularities of gravitational collapse and cosmology, in
Royal Society of Proceeding Series A, vol. 314 (1970), p. 529
125. R. Foster, D. Backer, Constructing a pulsar timing array. Astrophys. J. 361, 300 (1990)
126. R. Hellings, G. Downs, Upper limits on the isotropic gravitational radiation background from
pulsar timing analysis. Astrophys. J. 265, L39 (1983)
127. J. Verbiest et al., Timing stability of millisecond pulsars and prospects for gravitational-wave
detection. Mon. Not. R. Astron. Soc. 400, 951 (2009)
128. D.R.B. Yardley et al., The Sensitivity of the Parkes Pulsar timing array to individual sources
of gravitational waves. Mon. Not. R. Astron. Soc. 407, 669 (2010)
129. R. van Haasteren et al., Placing limits on the stochastic gravitational-wave background using
European timing array data. Mon. Not. R. Astron. Soc. 414(4), 3117–3128 (2011)
130. B.P. Abbott, R. Abbott, T.D. Abbott, M.R. Abernathy, F. Acernese, et al., Observation of
gravitational waves from a binary black hole merger. Phys. Rev. Lett. 116, 061102 (2016)
131. B.P. Abbott, R. Abbott, T.D. Abbott, F. Acernese, K. Ackley, et al., GW170817: observation
of gravitational waves from a binary neutron star inspiral. Phys. Rev. Lett. 119, 161101 (2017)
132. A. Sesana, A. Vecchio, Measuring the parameters of massive black hole binary systems with
pulsar timing array observations of gravitational waves. Phys. Rev. D 81, 104008 (2010)
133. X. Deng, L.S. Finn, Pulsar timing array observations of gravitational wave source timing
parallax. Mon. Not. R. Astron. Soc. 414(1), 50–58 (2011)
134. K.J. Lee, N. Wex, M. Kramer, B.W. Stappers, C.G. Bassa, et al., Gravitational wave astronomy
of single sources with a pulsar timing array. Mon. Not. R. Astron. Soc. 414, 3251 (2011)
