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Parametric invariance and the Pioneer anomaly

dc.contributor.authorFernández-Rañada, Antonio
dc.date.accessioned2023-06-20T03:38:45Z
dc.date.available2023-06-20T03:38:45Z
dc.date.issued2012-10
dc.description© Canadian Journal of Physics.
dc.description.abstractIt is usually assumed that the t parameter in the equations of dynamics can be identified with the indication of the pointer of a clock. Things are not so simple, however. In fact, because the equations of motion can be written in terms of t but also in terms of t' = f(t), f being any well-behaved function, any one of those infinite parametric times t' is as good as the newtonian one to study classical dynamics in hamiltonian form. Here we show that, as a consequence of parametric invariance, one of the foundations of classical dynamics, the relation between the mathematical parametric time t in the equations of dynamics and the physical dynamical time sigma that is measured with a particular clock (which is itself a dynamical system) requires the characterization of the clock that is used to achieve a complete treatment of dynamical systems. These two kinds of time, therefore, must be carefully distinguished. Furthermore, we show that not all the dynamical clock-times are necessarily equivalent and that the observational fingerprint of this nonequivalence has, curiously, the same form as that of the Pioneer anomaly. This suggests, therefore, that an acceleration to one another of the astronomical and the atomic times, t(astr) and t(atom), can contribute to the total amount of the anomaly.
dc.description.departmentDepto. de Estructura de la Materia, Física Térmica y Electrónica
dc.description.facultyFac. de Ciencias Físicas
dc.description.refereedTRUE
dc.description.statuspub
dc.eprint.idhttps://eprints.ucm.es/id/eprint/24878
dc.identifier.doi10.1139/P2012-086
dc.identifier.issn0008-4204
dc.identifier.officialurlhttp://dx.doi.org/10.1139/P2012-086
dc.identifier.relatedurlhttp://www.nrcresearchpress.com
dc.identifier.relatedurlhttp://digital.csic.es
dc.identifier.urihttps://hdl.handle.net/20.500.14352/44143
dc.issue.number10
dc.journal.titleCanadian Journal of Physics
dc.language.isoeng
dc.page.final937
dc.page.initial931
dc.publisherCanadian Science Publishing, NRC Research Press
dc.rights.accessRightsopen access
dc.subject.cdu537
dc.subject.keywordOuter Solar-System
dc.subject.keywordGravitational Origin
dc.subject.keywordSecular Increase
dc.subject.keywordAcceleration
dc.subject.keywordPlanets
dc.subject.keywordClocks
dc.subject.keywordGravity
dc.subject.keywordMotions
dc.subject.keywordSearch
dc.subject.keywordEnergy.
dc.subject.ucmElectricidad
dc.subject.ucmElectrónica (Física)
dc.subject.unesco2202.03 Electricidad
dc.titleParametric invariance and the Pioneer anomaly
dc.typejournal article
dc.volume.number90
dcterms.references1. A.T. Hanson, T. Regge, and C. Teitelboim, Constrained hamiltonian systems, Academia dei Lincei, Roma, 1976. 2. A.F. Rañada and A. Tiemblo, Found. Phys., 38, 458 (2008), doi:10.1007/s10701-008-9214-4. 3. A. Prati., J. Phys.: Conf. Ser., 306, 0112013 (2011). 4. R. Arnowitt, S. Deser, and C.W. Misner., Phys. Rev., 116, 1322, (1959), doi:10.1103/PhysRev.116.1322. 5. V. Perlick., Gen. Relativ. Gravit., 19, 1059 (1987), doi:10.1007/BF00759142. 6. V. Husain and K. Kuchař., Phys. Rev. D, 42, 4070 (1990), doi:10.1103/PhysRevD.42.4070. 7. J.F. Barbero G., A. Tiemblo, and R. Tresguerres., Phys. Rev. D, 57, 6104 (1998), doi:10.1103/PhysRevD.57.6104. 8. J.D. Anderson, Ph.A. Laing, E.L. Lau, A.S. Liu, M.M. Nieto, and S.G. Turyshev., Phys. Rev. D, 65, 082004 (2002), doi:10.1103/PhysRevD.65.082004. 9. J.D. Anderson, Ph.A. Laing, E.L. Lau, A.S. Liu, M.M. Nieto, and S.G. Turyshev., Phys. Rev. Lett., 81, 2858 (1998), doi:10.1103/PhysRevLett.81.2858. 10. S.G. Turyshev and V.T. Toth., arXiv:1001.3686v2, 19, 2010, --- S.G. Turyshev and V.T. Toth., Living Rev. Relativ., 13, 4 (2010). 11. J.D. Anderson, E.L. Lau, S.G. Turyshev, P.A. Laing, and M.M. Nieto, Mod. Phys. Lett., A, 17, 875 (2002), doi:10.1142/S0217732302007107. 12. S.G. Turyshev, M.M. Nieto, and J.D. Anderson, Am. J. Phys. 73, 1033 (2005), doi:10 1119/1.2008300. 13. J.D. Anderson, J.K. Campbell, and M.M. Nieto, New Astron., 12, 383 (2007), doi:10.1016/j.newast.2006.11.004. 14. M.M. Nieto and J.D. Anderson, Contemp. Phys., 48, 41 (2007), doi:10.1080/00107510701462061. 15. A.F. Rañada, Found. Phys., 34, 1955 (2004) and references therein, doi:10.1007/s10701-004-1629-y. 16. C.B. Markwardt, arXiv:gr-qc/0208046v1. 2002. 17. A. Levy, B. Christoffe, P. Bério, G. Métris, J.-M. Courty, and S. Reynaud, Adv. Space Res., 43, 1538 (2009), doi:10.1016/j.asr.2009.01.003. 18. Ø. Olsen, Astron. Astrophys, 463, 393 (2007), doi:10.1051/0004-6361:20065906. 19. V.T. Toth, Int. J. Mod. Phys. D, 18, 717 (2009), doi:10.1142/S0218271809014728. 20. S.G. Turyshev, V.T. Toth, L.R. Kellog, E.L. Lau, and K.J. Lee, Int. J. Mod. Phys. D, 15, 1 (2006), doi:10.1142/S0218271806008218. 21. V.T. Toth and S.G. Turyshev, arXiv:0710.25561. 2007. 22. V.T. Toth and S.G. Turyshev, arXiv:0901.4597v2 [physics space-ph], 2009 and references therein. 23. S.G. Turyshev and V.T. Toth, Space Sci. Rev., 148, 149 (2009), doi:10.1007/s11214-009-9543-4. 24. S.G. Turyshev, M.M. Nieto, and J.D. Anderson, In arXiv:gr/qc/0510081v1 17, Oct 2005, edited by G.A. Mamon, F. Combes, C. Deffayet, and B. Fort, EAS Publications Series, Vol. 20. 2006. pp. 243–250. 25. L. Iorio and G. Giudice, Astron. J., 11, 600 (2006). 26. G.L. Page, D.S. Dixon, and J.M. Wallin, Astrophys. J., 642,606 (2006), doi:10.1086/500796. 27. K. Tangen, Phys. Rev. D, 76, 042005 (2007), Phys. Rev. D, 76, doi:10.1103/042005. 28. L. Iorio, Found. Phys., 37, 897 (2007), doi:10.1007/s10701-007-9132-x. 29. J.F. Wallin, D.S. Dixon, and G.L. Page, Astrophys. J., 666, 1296 (2007), doi:10.1086/520528. 30. L. Iorio, Mon. Not. R. Astron. Soc., 405, 2615 (2010). 31. G.L. Page, Publ. Astron. Soc. Pac., 122, 259 (2010), doi:10.1086/651059. 32. L. Iorio, Mod. Phys. Lett. A, 27, 1250071-1 (2012), doi:10.1142/S021773231250071X. 33. M. Mizony and M. Lachièze-Rey, Astron. Astrophys, 434, 45 (2005), doi:10.1051/0004-6361:20042195. 34. C. Lämmerzahl, O. Preuss, and H. Dittus, In Lasers, Clocks and Drag-Free Control: Exploration of Relativistic Gravity in Space, edited by H. Dittus, C. Lämmerzahl, and S.G. Turyshev, 2008, Vol. 349 of Astrophysics and Space Science Library, p. 75, arXiv:gr-qc/060452. 35. G.U. Varieschi, arXiv:astro-ph.CO/1010.3262, 2010. 36. F. Francisco, O. Bertolami, P.J.S. Gil, and J. Paramos., arXiv:1103.5222v1 [physics.space-ph], 2011. 37. B. Rievers and C. Lämmerzahl.,Ann. Phys., (Berlin), 523, 439 (2011), doi:10.1002/andp.201100081. 38. S.G. Turyshev, V.T. Toth, J. Ellis, and C.B. Markward, Phys. Rev. Lett., 107, 081103 (2011), arXiv:gr-qc/1107.2886. 39. S.G. Turyshev, V.T. Toth, G. Kinsella, S.-C. Lee, S.M. Lok, and J. Ellis, arXiv:gr-qc/1204.2507, 2012. 40. J.D. Anderson and M.M. Nieto, Proceedings of the IAU Symp., 261, Relativity in Fundamental Astronomy: Dynamics, Reference Frames and Data Analysis, S.A. Klioner, P.K. Seidelmann, and M.H. Soffel (Editors), Cambridge University Press, Cambridge, 2010, p. 189. 41. L. Iorio, Mon. Not. R. Astron. Soc., 415, 1266 (2011), doi:10.1111/j.1365-2966.2011.18777.x. 42. J.D. Anderson, J.K. Campbell, J.E. Ekelund, J. Ellis, and J.F. Jordan, Phys. Rev. Lett., 100, 091102 (2008), Phys. Rev. Lett., 100, doi:10.1103/091102, PMID:18352689. 43. E.V. Pitjeva, In IAU Symposium, Vol. 261, edited by S.A. Klioner, P.K. Seidelmann, and M.H. Soffel, Cambridge University Press, Cambridge, 2010, p. 170. 44. L. Iorio, The Open Astron. J., 3, 1 (2010), doi:10.2174/1874381101003010001. 45. E.V. Pitjeva and N.P. Pitjev, Sol. Syst. Res., 46, 78 (2012), doi:10.1134/S0038094612010054. 46. G.A. Krasinsky and V.A. Brumberg, Celestial Mech. Dyn. Astron., 90, 267 (2004), doi:10.1007/s10569-004-0633-z. 47. A.F. Rañada and A. Tiemblo, arXiv:0909.0912v1 [gr-qc], 2009.
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