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The Adiabatic Instability on Cosmology's Dark Side
Rachel Bean, Eanna E. Flanagan, Mark Trodden
We consider theories with a nontrivial coupling between the matter and dark energy sectors. We describe a small scale instability that can occur in such models when the coupling is…
Constraining neutron star tidal Love numbers with gravitational wave detectors
Eanna E. Flanagan, Tanja Hinderer
Ground-based gravitational wave detectors may be able to constrain the nuclear equation of state using the early, low frequency portion of the signal of detected neutron star - neu…
Adiabatic instability in coupled dark energy-dark matter models
Rachel Bean, Eanna E. Flanagan, Mark Trodden
We consider theories in which there exists a nontrivial coupling between the dark matter sector and the sector responsible for the acceleration of the universe. Such theories can p…
Systematic corrections to the measured cosmological constant as a result of local inhomogeneity
R. Ali Vanderveld, Eanna E. Flanagan, Ira Wasserman
We calculate the systematic inhomogeneity-induced correction to the cosmological constant that one would infer from an analysis of the luminosities and redshifts of Type Ia superno…
Can Gravity Probe B usefully constrain torsion gravity theories?
Eanna E. Flanagan, Eran Rosenthal
In most theories of gravity involving torsion, the source for torsion is the intrinsic spin of matter. Since the spins of fermions are normally randomly oriented in macroscopic bod…
Detectability of Mode Resonances in Coalescing Neutron Star Binaries
Prakash Balachandran, Eanna E. Flanagan
Inspirals of neutron star-neutron star binaries are a promising source of gravitational waves for gravitational wave detectors like LIGO. During the inspiral, the tidal gravitation…