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Exact density–potential pairs from the holomorphic Coulomb field
We show how the complex-shift method developed by Appell to study the gravitational field of a point mass (and used in electrodynamics by, among others, Newman, Carter, Lynden-Bell, and Kaiser to determine some remarkable properties of the electromagnetic field of rotating charged configurations) ca...
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Published in: | Monthly notices of the Royal Astronomical Society 2007-04, Vol.376 (3), p.1162-1168 |
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container_title | Monthly notices of the Royal Astronomical Society |
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creator | Ciotti, Luca Giampieri, Giacomo |
description | We show how the complex-shift method developed by Appell to study the gravitational field of a point mass (and used in electrodynamics by, among others, Newman, Carter, Lynden-Bell, and Kaiser to determine some remarkable properties of the electromagnetic field of rotating charged configurations) can be extended to obtain new and explicit density–potential pairs for self-gravitating systems departing significantly from spherical symmetry. The rotational properties of two axisymmetric baroclinic gaseous configurations derived with the proposed method are illustrated. |
doi_str_mv | 10.1111/j.1365-2966.2007.11497.x |
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subjects | Astronomy Astrophysics celestial mechanics Earth, ocean, space Electromagnetism Exact sciences and technology galaxies: kinematics and dynamics Gases Gravity stellar dynamics |
title | Exact density–potential pairs from the holomorphic Coulomb field |
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