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Adrian C Ottewill

Publications and source records attributed to Adrian C Ottewill.

2 recordsLinked to original sources

Octupolar invariants for compact binaries on quasi-circular orbits

We extend the gravitational self-force methodology to identify and compute new $O(μ)$ tidal invariants for a compact body of mass $μ$ on a quasi-circular orbit about a black hole of mass $M \gg μ$. In the octupolar sector we find seven new degrees of freedom, made up of 3+3 conservative/dissipative `electric' invariants and 3+1 `magnetic' invariants, satisfying 1+1 and 1+0 trace conditions. After formulating for equatorial circular orbits on Kerr spacetime, we calculate explicitly for Schwarzschild spacetime. We employ both Lorenz gauge and Regge-Wheeler gauge numerical codes, and the functional series method of Mano, Suzuki and Takasugi. We present (i) highly-accurate numerical data and (ii) high-order analytical post-Newtonian expansions. We demonstrate consistency between numerical and analytic results, and prior work. We explore the application of these invariants in effective one-body models, and binary black hole initial-data formulations, and conclude with a discussion of future work.

gr-qc

Quantum corrections to critical phenomena in gravitational collapse

We investigate conformally coupled quantum matter fields on spherically symmetric, continuously self-similar backgrounds. By exploiting the symmetry associated with the self-similarity the general structure of the renormalized quantum stress-energy tensor can be derived. As an immediate application we consider a combination of classical, and quantum perturbations about exactly critical collapse. Generalizing the standard argument which explains the scaling law for black hole mass, $M \propto |η-η^*|^β$, we demonstrate the existence of a quantum mass gap when the classical critical exponent satisfies $β\geq 0.5$. When $β< 0.5$ our argument is inconclusive; the semi-classical approximation breaks down in the spacetime region of interest.

gr-qc