Approximate analytic solutions to the isothermal Lane–Emden equation

We derive accurate analytic approximations to the solution of the isothermal Lane–Emden equation, a basic equation in Astrophysics that describes the Newtonian equilibrium structure of self-gravitating, isothermal fluid spheres. The solutions we obtain, using analytic arguments and rational approxim...

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Veröffentlicht in:Celestial mechanics and dynamical astronomy 2014-03, Vol.118 (3), p.291-298
Hauptverfasser: Iacono, R., De Felice, M.
Format: Artikel
Sprache:eng
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Zusammenfassung:We derive accurate analytic approximations to the solution of the isothermal Lane–Emden equation, a basic equation in Astrophysics that describes the Newtonian equilibrium structure of self-gravitating, isothermal fluid spheres. The solutions we obtain, using analytic arguments and rational approximations, have simple forms, and are accurate over a radial extent that is much larger than that covered by conventional series expansions around the origin. Our best approximation has a maximum error on density of 0.04 % at 10 core radii, and is still within 1 % from an accurate numerical solution at a radius three times larger.
ISSN:0923-2958
1572-9478
DOI:10.1007/s10569-014-9539-6