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We consider redshift drift in a general space-time as expressed in terms of physically interpretable multipole series.
1902
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S. M. Koksbang, Another look at redshift drift and the backreaction conjecture, JCAP 10
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A. Sandage, The Change of Redshift and Apparent Luminosity of Galaxies due to the Deceleration of Selected Expanding Universes, Astrophysical Journal 136
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G. C. McVittie, Appendix to The Change of Redshift and Apparent Luminosity of Galaxies due to the Deceleration of Selected Expanding Universes, Astrophysical Journal 136
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G. F. R. Ellis, Relativistic Cosmology: Its Nature, Aims and Problems, Fundam. Theor. Phys. 9
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G. F. R. Ellis and W. Stoeger, The ‘fitting problem’ in cosmology, Class. Quantum Grav. 4
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A. Loeb, Direct Measurement of Cosmological Parameters from the Cosmic Deceleration of Extragalactic Objects, Astrophys. J. Lett. 499
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S. Räsänen, Light propagation in statistically homogeneous and isotropic dust universes, JCAP 02
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C. -M. Yoo, T. Kai, K. Nakao, Redshift Drift in LTB Void Universes, Phys. Rev. D 83
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A. Balcerzak and M. P. Dabrowski, Redshift drift in a pressure gradient cosmology, Phys. Rev. D 87
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2009
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2015
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2016
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M. Korzyński and J. Kopiński, Optical drift effects in general relativity, JCAP 03
2018
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