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Stellar Oscillations in Scalar-Tensor Theory of Gravity

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arxiv gr-qc/0506060 v2 pith:6SA6Z22S submitted 2005-06-10 gr-qc astro-ph

classification gr-qcastro-ph
keywords scalarwavesfieldgravitationalgravityoscillationsscalar-tensorspectrum
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We derive the perturbation equations for relativistic stars in scalar-tensor theories of gravity and study the corresponding oscillation spectrum. We show that the frequency of the emitted gravitational waves is shifted proportionally to the scalar field strength. Scalar waves which might be produced from such oscillations can be a unique probe for the theory, but their detectability is questionable if the radiated energy is small. However we show that there is no need for a direct observation of scalar waves: the shift in the gravitational wave spectrum could unambiguously signal the presence of a scalar field.

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  1. Axial $w$-modes of anisotropic neutron stars

    gr-qc 2026-05 unverdicted novelty 4.0 of 10

    Axial w-mode frequencies of anisotropic neutron stars decrease monotonically with mass, depend approximately linearly on compactness with anisotropy modifying slope and intercept, damping times increase with mass, and...

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