139 citations · 219 across the 4 of their papers we have counts for
6 papers
Directional limits on persistent gravitational waves from Advanced LIGO's first observing run
The LIGO Scientific Collaboration, the Virgo Collaboration, B. P. Abbott +993
We employ gravitational-wave radiometry to map the gravitational waves stochastic background expected from a variety of contributing mechanisms and test the assumption of isotropy…
Fast methods for training Gaussian processes on large data sets
Christopher J. Moore, Alvin J. K. Chua, Christopher P. L. Berry +1
Gaussian process regression (GPR) is a non-parametric Bayesian technique for interpolating or fitting data. The main barrier to further uptake of this powerful tool rests in the co…
GW150914: Implications for the stochastic gravitational wave background from binary black holes
The LIGO Scientific Collaboration, the Virgo Collaboration
The LIGO detection of the gravitational wave transient GW150914, from the inspiral and merger of two black holes with masses , suggests a population of…
Observing the Galaxy's massive black hole with gravitational wave bursts
C. P. L. Berry, J. R. Gair
An extreme-mass-ratio burst (EMRB) is a gravitational wave signal emitted when a compact object passes through periapsis on a highly eccentric orbit about a much more massive objec…
Extreme-mass-ratio bursts from the Galactic Centre
Christopher P. L. Berry, Jonathan R. Gair
An extreme-mass-ratio burst (EMRB) is a gravitational wave signal emitted when a compact object passes through periapsis on a highly eccentric orbit about a much more massive body,…
Gravitational wave energy spectrum of a parabolic encounter
Christopher P. L. Berry, Jonathan R. Gair
We derive an analytic expression for the energy spectrum of gravitational waves from a parabolic Keplerian binary by taking the limit of the Peters and Matthews spectrum for eccent…