The Motion of Point Particles in Curved Spacetime

Author:

Poisson Eric

Publisher

Springer Science and Business Media LLC

Subject

Physics and Astronomy (miscellaneous)

Reference64 articles.

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2. Barack, L., “Self-force on a scalar particle in spherically symmetric spacetime via mode-sum regularization: Radial trajectories”, Phys. Rev. D, 62, 084027-1–084027-21, (2000). For a related online version see: L. Barack, “Self-force on a scalar particle in spherically symmetric spacetime via mode-sum regularization: Radial trajectories”, (May, 2000), [Online Los Alamos Archive Preprint]: cited on 02 April 2004, http://www.arxiv.org/abs/gr-qc/0005042. 1.10

3. Barack, L., “Gravitational self-force by mode sum regularization”, Phys. Rev. D, 64, 084021-1–084021-16, (2001). For a related online version see: L. Barack, “Gravitational self-force by mode sum regularization”, (May, 2001), [Online Los Alamos Archive Preprint]: cited on 02 April 2004, http://www.arxiv.org/abs/gr-qc/0105040. 1.10

4. Barack, L., and Burko, L., “Radiation-reaction force on a particle plunging into a black hole”, Phys. Rev. D, 62, 084040-1–084040-5, (2000). For a related online version see: L. Barack, et al., “Radiation-reaction force on a particle plunging into a black hole”, (July, 2000), [Online Los Alamos Archive Preprint]: cited on 02 April 2004, http://www.arxiv.org/abs/gr-qc/0007033. 1.10

5. Barack, L., and Lousto, C.O., “Computing the gravitational self-force on a compact object plunging into a Schwarzschild black hole”, Phys. Rev. D, 66, 061502-1–061502-5, (2002). For a related online version see: L. Barack, et al., “Computing the gravitational self-force on a compact object plunging into a Schwarzschild black hole”, (May, 2002), [Online Los Alamos Archive Preprint]: cited on 02 April 2004, http://www.arxiv.org/abs/gr-qc/0205043. 1.10, 5.5.5

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