Relativistic tidal properties of neutron stars
نویسندگان
چکیده
We study the various linear responses of neutron stars to external relativistic tidal fields. We focus on three different tidal responses, associated to three different tidal coefficients: (i) a gravito-electrictype coefficient Gμl = [length] 2l+1 measuring the l-order mass multipolar moment GMa1...al induced in a star by an external l-order gravito-electric tidal field Ga1...al ; (ii) a gravito-magnetictype coefficient Gσl = [length] 2l+1 measuring the l spin multipole moment GSa1...al induced in a star by an external l-order gravito-magnetic tidal field Ha1...al ; and (iii) a dimensionless “shape” Love number hl measuring the distorsion of the shape of the surface of a star by an external l-order gravito-electric tidal field. All the dimensionless tidal coefficients Gμl/R , Gσl/R 2l+1 and hl (where R is the radius of the star) are found to have a strong sensitivity to the value of the star’s “compactness” c ≡ GM/(c20R) (where we indicate by c0 the speed of light). In particular, Gμl/R 2l+1 ∼ kl is found to strongly decrease, as c increases, down to a zero value as c is formally extended to the “black-hole limit” c = 1/2. The shape Love number hl is also found to significantly decrease as c increases, though it does not vanish in the formal limit c → c, but is rather found to agree with the recently determined shape Love numbers of black holes. The formal vanishing of μl and σl as c → c BH is a consequence of the no-hair properties of black holes. This vanishing suggests, but in no way proves, that the effective action describing the gravitational interactions of black holes may not need to be augmented by nonminimal worldline couplings.
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تاریخ انتشار 2009