Evolution of Periodic Orbits in the Sun-Saturn System
- 1 Department of Mathematics, Dharmsinh Desai University, Nadiad, India
- 2 Department of Aerospace Engineering, Karunya University, Coimbatore, India
- 3 Department of Mathematics, Faculty of Science, The Maharaja Sayajirao University of Baroda
Abstract
We analyze the periodic orbits, quasi periodic orbits and chaotic orbits in the photo gravitational Sun-Saturn system incorporating actual oblateness of Saturn in the planar circular restricted three body problem. In this paper, we study the effect of solar radiation pressure on the location of Sun centered and Saturn centered orbits, its diameter, semi major axis and eccentricity by taking different values of solar radiation pressure q and different values of Jacobi constant “C”, and by considering actual oblateness of Saturn using Poincare surface of section (PSS) method. It is ob-served that by the introduction of perturbing force due to solar radiation pressure admissible range of Jacobi constant C decreases, it is also observed that as value of C decreases the number of islands decreases and as a result the number of periodic and quasi periodic orbits decreases.Fur-ther, the periodic orbits around Saturn and Sun moves towards Sun by decreasing perturbation due to solar radiation pressure q for a specific choice of Jacobi constant C. It is also observed that due to solar radiation pressure, semi major axis and eccentricity of Sun centered periodic orbit reduces, whereas, due to solar radiation pressure uniform change in semi major axis and eccen-tricity of Saturn centered periodic orbits is observed.
- Szebehely, V. (1967) Theory of Orbits. Academic Press, San Diego.
- Poynting, J.H. (1904) Radiation in the Solar System: Its Effect on Temperature and its Pressure on Small Bodies. Philosophical Transactions of the Royal Society A: Physical Sciences and Engineering, 202, 525-552. http://dx.doi.org/10.1098/rsta.1904.0012
- Robertson, H.P. (1937) Dynamical Effects of Radiation in the Solar System. Monthly Notices of the Royal Astronomical Society, 97, 423-438. http://dx.doi.org/10.1093/mnras/97.6.423
- Abouelmagd, E.I. (2013) The Effect of Photogravitational Force and Oblateness in the Perturbed Restricted Three-Body Problem. Astrophysics and Space Science, 346, 51-69. http://dx.doi.org/10.1007/s10509-013-1439-9
- Broucke, R.A. (1968) Periodic Orbits in the Restricted Three-Body Problem with Earth-Moon Masses. Technical Report, No. 32, Jet Propulsion Laboratory, Pasadena.
- Poincare, H. (1892) Les Methodes Nouvelles de la Mechanique Celeste. Vol. 1, Gauthier-Villas, Paris, 82.
- Murray, C.D. and Dermot, S.F. (1999) Solar System Dynamics. Cambridge University Press, Cambridge.
- Kolmen, E., Kasdin, N.J. and Gurfil, P. (2007) Quasi-Periodic Orbits of the Restricted Three-Body Problem Made Easy. New Trends in Astrodynamics and Applications III, Vol. 886, Melville, 16-18 August 2006, 68. http://dx.doi.org/10.1063/1.2710044
- Winter, O.C. (2000) The Stability Evolution of a Family of Simply Periodic Lunar Orbits. Planetary and Space Science, 48, 23-28. http://dx.doi.org/10.1016/S0032-0633(99)00082-3
- Dutt, P. and Sharma, R.K. (2010) Analysis of Periodic and Quasi-Periodic Orbits in the Earth-Moon System. Journal of Guidance, Control, and Dynamics, 33, 1010-1017. http://dx.doi.org/10.2514/1.46400
- Dutt, P. and Sharma, R.K. (2011) Evolution of Periodic Orbits in the Sun-Mars System. Journal of Guidance, Control, and Dynamics, 34, 635-644. http://dx.doi.org/10.2514/1.51101
- Safiya Beevi, A. and Sharma, R.K. (2012) Oblateness Effect of Saturn on Periodic Orbits in the Saturn-Titan Restricted Three-Body Problem. Astrophysics and Space Science, 340, 245-261. http://dx.doi.org/10.1007/s10509-012-1052-3
- Safiya Beevi, A. (2012) Study of Orbits in the Restricted Three Body Problem When More Massive Primary Is an Oblate Spheroid. Ph.D. Thesis, University of Kerala, VSSC, Thiruvananthapuram.