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Tidal Stabilization of Rigidly Rotating, Fully Relativistic Neutron Stars

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arxiv gr-qc/9706057 v2 pith:4IQQSSTE submitted 1997-06-18 gr-qc astro-ph

classification gr-qcastro-ph
keywords startidalneutroncollapsedeltarigidlyrotatinganalysis
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abstract

It is shown analytically that an external tidal gravitational field increases the secular stability of a fully general relativistic, rigidly rotating neutron star that is near marginal stability, protecting it against gravitational collapse. This stabilization is shown to result from the simple fact that the energy $\delta M(Q,R)$ required to raise a tide on such a star, divided by the square of the tide's quadrupole moment $Q$, is a decreasing function of the star's radius $R$, $(d/dR)[\delta M(Q,R)/Q^2]<0$ (where, as $R$ changes, the star's structure is changed in accord with the star's fundamental mode of radial oscillation). If $(d/dR)[\delta M(Q,R)/Q^2]$ were positive, the tidal coupling would destabilize the star. As an application, a rigidly rotating, marginally secularly stable neutron star in an inspiraling binary system will be protected against secular collapse, and against dynamical collapse, by tidal interaction with its companion. The ``local-asymptotic-rest-frame'' tools used in the analysis are somewhat unusual and may be powerful in other studies of neutron stars and black holes interacting with an external environment. As a byproduct of the analysis, in an appendix the influence of tidal interactions on mass-energy conservation is elucidated.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 104 citations worldwide. Full citation record

  1. Tidal deformation and strain accumulation of solid compact stars

    astro-ph.HE 2026-07 conditional novelty 5.5 of 10

    Solid strangeon stars of 1.4 Msun differ by ~40% in tidal deformability from fluid counterparts and release up to 10^46 erg via central-peaking strain fracture at hundreds of Hz.

  2. Slowly Rotating and Tidal Deformation of Nonlocal Modified Tolman VII Star

    gr-qc 2025-05 conditional novelty 5.0 of 10

    For the NEMTVII nonlocal neutron star model, tidal deformability matches GW170817 only for alpha greater than about 1.6 and beta below 1 km^2, while I-Love-Q universality breaks for beta above about 10 km^2.

  3. $f$-Mode oscillations and the gravitational response of compact stars with analytic equations of state

    hep-ph 2026-01 conditional novelty 3.0 of 10

    Compact-star masses, radii, tidal deformabilities, and f-mode frequencies and damping times are computed from two analytic equations of state (holographic WSS QCD and self-interacting dark matter).

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