2 General Relativity Measurements from Pulsars
93
59. R.J. Dewey, J.H. Taylor, J.M. Weisberg, G.H. Stokes, A search for low-luminosity pulsars.
Astrophys. J. 294, L25–L29 (1985)
60. L. Shao et al., A new limit on local Lorentz invariance violation of gravity from solitary
pulsars. Class. Quant. Grav. 30, 165019 (2013). arXiv: 1307.2552
61. J. Boyles et al., The green bank telescope 350 MHz drift-scan survey I: survey observations
and the discovery of 13 pulsars. Astrophys. J. 763, 80 (2013). arXiv: 1209.4293
62. D. McConnell et al., Radio pulsars in the Magellanic Clouds. Mon. Not. R. Astron. Soc. 249,
654–657 (1991)
63. I.H. Stairs et al., PSR J1740−3052—a pulsar with a massive companion. Mon. Not. R.
Astron. Soc. 325, 979–988 (2001)
64. I.H. Stairs, S.E. Thorsett, Z. Arzoumanian, Measurement of gravitational spin-orbit coupling
in a binary-pulsar system. Phys. Rev. Lett. 93, 141101 (2004)
65. P. Kumar, E.J. Quataert, On the Orbital Decay of the PSR J0045-7319 Binary. Astrophys. J.
493, 412 (1998)
66. I.H. Stairs, S.E. Thorsett, J.H. Taylor, A. Wolszczan, Studies of the relativistic binary pulsar
PSR B1534+12: I. timing analysis. Astrophys. J. 581, 501–508 (2002)
67. J.H. Taylor, J.M. Cordes, Pulsar distances and the galactic distribution of free electrons.
Astrophys. J. 411, 674 (1993)
68. D.R. Lorimer, M. Kramer, in Handbook of Pulsar Astronomy (Cambridge University,
Cambridge, 2005)
69. A.G. Lyne, G. Smith, in Pulsar Astronomy, 3rd edn. (Cambridge University, Cambridge,
2005)
70. I.I. Shapiro, Fourth test of general relativity. Phys. Rev. Lett. 13, 789 (1964)
71. G. Hobbs, A.G. Lyne, M. Kramer, An analysis of the timing irregularities for 366 pulsars.
Mon. Not. R. Astron. Soc. 402, 1027 (2010)
72. I. Cognard, D.C. Backer, A Microglitch in the Millisecond Pulsar PSR B1821-24 in M28.
Astrophys. J. 612, 125 (2004)
73. C. Will, in Theory and Experiments in Gravitational Physics (Cambridge University,
Cambridge, 1993)
74. C. Will, The confrontation between general relativity and experiment in General Relativity
and John Archibald Wheeler, ed. by I. Ciufolini, R.A. Matzner. Advanced Solid State Lasers
Conference (ASSL), vol. 367 (2010), p. 73
75. C. Will, The Confrontation between General Relativity and Experiment. LLR, vol. 17 (2014),
p. 4
76. C. Will, K.J. Nordvedt, Conservation laws and preferred frames in relativistic gravity. I.
Preferred-frame theories and an extended PPN formalism. Astrophys. J. 177, 757 (1972)
77. T. Damour, G. Esposito-Farèse, Testing gravity to second post-Newtonian order: a field-theory
approach. Phys. Rev. D. 53, 5541 (1996)
78. T. Damour, G. Esposito-Farèse, Tensor-multi-scalar theories of gravitation. Class. Quantum
Grav. 9, 2093 (1992)
79. K. Nordtvedt, Testing relativity with laser ranging of the moon. Phys. Rev. 170, 1186 (1968)
80. I.H. Stairs et al., Discovery of three wide-orbit binary pulsars: implications for binary
evolution and equivalence principles. Astrophys. J. 632, 1060 (2005)
81. P.C.C. Freire, M. Kramer, N. Wex, Tests of the universality of free fall for strongly
self-gravitating bodies with radio pulsars. Class. Quant. Grav. 29, 184007 (2012). arXiv:
1205.3751
82. I. Stairs, Testing general relativity with pulsar timing. LLR 6, 5 (2003)
83. J. Antoniadis, et al., The relativistic pulsar-white dwarf binary PSR J1738+0333 I. Mass
determination and evolutionary history. Mon. Not. R. Astron. Soc. 423, 3316–3327 (2012).
arXiv: 1204.3948
84. P.C.C. Freire et al., The relativistic pulsar-white dwarf binary PSR J1738+0333 II. The most
stringent test of scalar-tensor gravity. Mon. Not. R. Astron. Soc. 423, 3328–3343 (2012).
arXiv: 1205.1450
93
59. R.J. Dewey, J.H. Taylor, J.M. Weisberg, G.H. Stokes, A search for low-luminosity pulsars.
Astrophys. J. 294, L25–L29 (1985)
60. L. Shao et al., A new limit on local Lorentz invariance violation of gravity from solitary
pulsars. Class. Quant. Grav. 30, 165019 (2013). arXiv: 1307.2552
61. J. Boyles et al., The green bank telescope 350 MHz drift-scan survey I: survey observations
and the discovery of 13 pulsars. Astrophys. J. 763, 80 (2013). arXiv: 1209.4293
62. D. McConnell et al., Radio pulsars in the Magellanic Clouds. Mon. Not. R. Astron. Soc. 249,
654–657 (1991)
63. I.H. Stairs et al., PSR J1740−3052—a pulsar with a massive companion. Mon. Not. R.
Astron. Soc. 325, 979–988 (2001)
64. I.H. Stairs, S.E. Thorsett, Z. Arzoumanian, Measurement of gravitational spin-orbit coupling
in a binary-pulsar system. Phys. Rev. Lett. 93, 141101 (2004)
65. P. Kumar, E.J. Quataert, On the Orbital Decay of the PSR J0045-7319 Binary. Astrophys. J.
493, 412 (1998)
66. I.H. Stairs, S.E. Thorsett, J.H. Taylor, A. Wolszczan, Studies of the relativistic binary pulsar
PSR B1534+12: I. timing analysis. Astrophys. J. 581, 501–508 (2002)
67. J.H. Taylor, J.M. Cordes, Pulsar distances and the galactic distribution of free electrons.
Astrophys. J. 411, 674 (1993)
68. D.R. Lorimer, M. Kramer, in Handbook of Pulsar Astronomy (Cambridge University,
Cambridge, 2005)
69. A.G. Lyne, G. Smith, in Pulsar Astronomy, 3rd edn. (Cambridge University, Cambridge,
2005)
70. I.I. Shapiro, Fourth test of general relativity. Phys. Rev. Lett. 13, 789 (1964)
71. G. Hobbs, A.G. Lyne, M. Kramer, An analysis of the timing irregularities for 366 pulsars.
Mon. Not. R. Astron. Soc. 402, 1027 (2010)
72. I. Cognard, D.C. Backer, A Microglitch in the Millisecond Pulsar PSR B1821-24 in M28.
Astrophys. J. 612, 125 (2004)
73. C. Will, in Theory and Experiments in Gravitational Physics (Cambridge University,
Cambridge, 1993)
74. C. Will, The confrontation between general relativity and experiment in General Relativity
and John Archibald Wheeler, ed. by I. Ciufolini, R.A. Matzner. Advanced Solid State Lasers
Conference (ASSL), vol. 367 (2010), p. 73
75. C. Will, The Confrontation between General Relativity and Experiment. LLR, vol. 17 (2014),
p. 4
76. C. Will, K.J. Nordvedt, Conservation laws and preferred frames in relativistic gravity. I.
Preferred-frame theories and an extended PPN formalism. Astrophys. J. 177, 757 (1972)
77. T. Damour, G. Esposito-Farèse, Testing gravity to second post-Newtonian order: a field-theory
approach. Phys. Rev. D. 53, 5541 (1996)
78. T. Damour, G. Esposito-Farèse, Tensor-multi-scalar theories of gravitation. Class. Quantum
Grav. 9, 2093 (1992)
79. K. Nordtvedt, Testing relativity with laser ranging of the moon. Phys. Rev. 170, 1186 (1968)
80. I.H. Stairs et al., Discovery of three wide-orbit binary pulsars: implications for binary
evolution and equivalence principles. Astrophys. J. 632, 1060 (2005)
81. P.C.C. Freire, M. Kramer, N. Wex, Tests of the universality of free fall for strongly
self-gravitating bodies with radio pulsars. Class. Quant. Grav. 29, 184007 (2012). arXiv:
1205.3751
82. I. Stairs, Testing general relativity with pulsar timing. LLR 6, 5 (2003)
83. J. Antoniadis, et al., The relativistic pulsar-white dwarf binary PSR J1738+0333 I. Mass
determination and evolutionary history. Mon. Not. R. Astron. Soc. 423, 3316–3327 (2012).
arXiv: 1204.3948
84. P.C.C. Freire et al., The relativistic pulsar-white dwarf binary PSR J1738+0333 II. The most
stringent test of scalar-tensor gravity. Mon. Not. R. Astron. Soc. 423, 3328–3343 (2012).
arXiv: 1205.1450
