Toward realistic and practical no-hair relations for neutron stars in the nonrelativistic limit
Abstract
The gravitational properties of astrophysical objects depend sensitively on their internal structure. In Newtonian theory, the gravitational potential of a rotating star can be fully described by an infinite number of multipole moments of its mass distribution. Recently, this infinite number of moments for uniformly-rotating stars were shown semianalytically to be expressible in terms of just the first three: the mass, the spin, and the quadrupole moment of the star. The relations between the various lower multipole moments were additionally shown to depend weakly on the equation of state, when considering neutron stars and assuming single polytropic equations of state. Here we extend this result in two ways. First, we show that the universality also holds for realistic equations of state, thus relaxing the need to use single polytropes. Second, we derive purely analytical universal relations by perturbing the equations of structure about an n=0 polytrope that reproduce semianalytic results to O(1%). We also find that the linear-order perturbation vanishes in some cases, which provides further evidence and a deeper understanding of the universality.
Additional Information
© 2014 American Physical Society. Received 27 June 2014; published 17 September 2014. We would like to thank Leo Stein and George Pappas for comments on this manuscript. We would also like to thank Charles Kankelborg for comments on our numerical implementation. K. C. acknowledges support from the Onassis Foundation. N. Y. acknowledges support from NSF Grant No. PHY-1114374, NSF CAREER Grant No. PHY-1250636 and NASA Grant No. NNX11AI49G.Attached Files
Published - PhysRevD.90.064030.pdf
Accepted Version - 1406.7135.pdf
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Additional details
- Alternative title
- Toward Realistic and Practical No-Hair Relations for Neutron Stars in the Non-Relativistic Limit
- Eprint ID
- 104743
- Resolver ID
- CaltechAUTHORS:20200805-072632325
- Alexander S. Onassis Public Benefit Foundation
- NSF
- PHY-1114374
- NSF
- PHY-1250636
- NASA
- NNX11AI49G
- Created
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2020-08-05Created from EPrint's datestamp field
- Updated
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2021-11-16Created from EPrint's last_modified field