Universality and stationarity of the I-Love relation for self-bound stars
arXiv:1511.08566 · doi:10.1103/PhysRevD.93.024033
Abstract
The emergence of the I-Love-Q relations, revealing that the moment of inertia, the tidal Love number (deformability) and the spin-induced quadrupole moment of compact stars are, to high accuracy, interconnected in a universal way disregarding the wide variety of equations of state (EOSs) of dense matter, has attracted much interest recently. However, the physical origin of these relations is still a debatable issue. In the present paper, we focus on the I-Love relation for self-bound stars (SBSs) such as incompressible stars and quark stars. We formulate perturbative expansions for the moment of inertia, the tidal Love number (deformability) and the I-Love relation of SBSs. By comparing the respective I-Love relations of incompressible stars and a specific kind of SBSs, we show analytically that the I-Love relation is, to relevant leading orders in stellar compactness, stationary with respect to changes in the EOS about the incompressible limit. Hence, the universality of the I-Love relation is indeed attributable to the proximity of compact stars to incompressible stars, and the stationarity of the relation as unveiled here. We also discover that the moment of inertia and the tidal deformability of a SBS with finite compressibility are, to leading order in compactness, equal to their counterparts of an incompressible star with an adjusted compactness, thus leading to a novel explanation for the I-Love universal relation.
23 pages, 7 figures, submitted to Physical Review D
References in corpus (11)
- Neutron Star Observations: Prognosis for Equation of State Constraints
- Tidal Love numbers of neutron stars
- Constraining neutron star tidal Love numbers with gravitational wave detectors
- I-Love-Q, Spontaneously: Slowly Rotating Neutron Stars in Scalar-Tensor Theories
- Multipolar universal relations between f-mode frequency and tidal deformability of compact stars
- Quadrupole Moments of Rapidly Rotating Compact Objects in Dilatonic Einstein-Gauss-Bonnet Theory
- Why I-Love-Q
- Universal I-Q relations for rapidly rotating neutron and strange stars in scalar-tensor theories
- The I-Q relations for rapidly rotating neutron stars in gravity
- Unveiling the universality of I-Love-Q relations
- I-Love relation for incompressible stars and realistic stars
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- I-Love-Q Relations for Neutron Stars in dynamical Chern Simons Gravity
- New quasi-universal relations for static and rapid rotating neutron stars
- Moment of inertia and compactness of quark stars within the context of gravity
- I-Love-: Approximately universal relations for the average neutron star stiffness
- Tidal Love numbers and moment-Love relations of polytropic stars
- Universal relations for anisotropic interacting quark stars
- Effect of the crust on neutron star empirical relations