Binary Love Relations
arXiv:1512.02639 · doi:10.1088/0264-9381/33/13/13LT01
Abstract
When in a tight binary, the mutual tidal deformations of neutron stars imprint onto observables, encoding information about their internal structure at supranuclear densities and gravity in the extreme-gravity regime. Gravitational wave observations of their late binary inspiral may serve as a tool to extract the individual tidal deformabilities, but this is made difficult by degeneracies between them in the gravitational wave model. We here resolve this problem by discovering approximately universal relations between dimensionless combinations of the individual tidal deformabilities. We show that these relations break degeneracies in the gravitational wave model, allowing for the accurate extraction of both deformabilities. Such measurements can be used to better differentiate between equation-of-state models, and improve tests of General Relativity and cosmology.
10 pages, 4 figures; fitting formulas added, accepted to CQG Letter
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- Inference of the neutron star equation of state from cosmological distances
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- Universal Relations and Alternative Gravity Theories
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- Systematic errors due to quasi-universal relations in binary neutron stars and their correction for unbiased model selection
- Universal Relations for rapidly rotating neutron stars using supervised machine-learning techniques
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- Probing modified gravitational-wave propagation through tidal measurements of binary neutron star mergers
- High-Order Multipole and Binary Love Number Universal Relations
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- Follow-up analyses of the binary-neutron-star signals GW170817 and GW190425 by using post-Newtonian waveform models
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- Cosmology with Love: Measuring the Hubble constant using neutron star universal relations