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papers

Publications (43)

gr-qc2019

Black holes, gravitational waves and fundamental physics: a roadmap

Leor Barack, Vitor Cardoso, Samaya Nissanke +203

astro-ph.HE2019

Can Neutron-Star Mergers Explain the r-process Enrichment in Globular Clusters?

Michael Zevin, Kyle Kremer, Daniel M. Siegel +4

gr-qc2017

Importance of transient resonances in extreme-mass-ratio inspirals

Christopher P. L. Berry, Robert H. Cole, Priscilla Cañizares +1

gr-qc2023

Astrophysics with the Laser Interferometer Space Antenna

Pau Amaro Seoane, Jeff Andrews, Manuel Arca Sedda +156

astro-ph.HE2018

Accuracy of inference on the physics of binary evolution from gravitational-wave observations

Jim W. Barrett, Sebastian M. Gaebel, Coenraad J. Neijssel +5

astro-ph.HE2015

Parameter estimation for binary neutron-star coalescences with realistic noise during the Advanced LIGO era

Christopher P. L. Berry, Ilya Mandel, Hannah Middleton +15

gr-qc2021

The Next Generation Global Gravitational Wave Observatory: The Science Book

Vicky Kalogera, B. S. Sathyaprakash, Matthew Bailes +88

astro-ph.HE2020

You Can't Always Get What You Want: The Impact of Prior Assumptions on Interpreting GW190412

Michael Zevin, Christopher P. L. Berry, Scott Coughlin +2

gr-qc2012

Linearized f(R) Gravity: Gravitational Radiation & Solar System Tests

Christopher P. L. Berry, Jonathan R. Gair

gr-qc2024

Gravity Spy: Lessons Learned and a Path Forward

Michael Zevin, Corey B. Jackson, Zoheyr Doctor +23

gr-qc2018

Testing general relativity using gravitational wave signals from the inspiral, merger and ringdown of binary black holes

Abhirup Ghosh, Nathan K. Johnson-McDaniel, Archisman Ghosh +6

astro-ph.HE2020

Forward Modeling of Double Neutron Stars: Insights from Highly-Offset Short Gamma-Ray Bursts

Michael Zevin, Luke Zoltan Kelley, Anya Nugent +3

astro-ph.HE2024

Rapid determination of LISA sensitivity to extreme mass ratio inspirals with machine learning

Christian E. A. Chapman-Bird, Christopher P. L. Berry, Graham Woan

gr-qc2016

Improving gravitational-wave parameter estimation using Gaussian process regression

Christopher J. Moore, Christopher P. L. Berry, Alvin J. K. Chua +1

astro-ph.HE2019

Multi-Messenger Astronomy with Extremely Large Telescopes

Ryan Chornock, Philip S. Cowperthwaite, Raffaella Margutti +82

astro-ph.HE2017

Hierarchical analysis of gravitational-wave measurements of binary black hole spin-orbit misalignments

Simon Stevenson, Christopher P. L. Berry, Ilya Mandel

gr-qc2014

Gravitational-wave sensitivity curves

Christopher J. Moore, Robert H. Cole, Christopher P. L. Berry

gr-qc2025

The Science of the Einstein Telescope

Adrian Abac, Raul Abramo, Simone Albanesi +485

astro-ph.IM2022

The Effect of Mission Duration on LISA Science Objectives

Pau Amaro Seoane, Manuel Arca Sedda, Stanislav Babak +38

astro-ph.HE2020

Exploring the Lower Mass Gap and Unequal Mass Regime in Compact Binary Evolution

Michael Zevin, Mario Spera, Christopher P. L. Berry +1

astro-ph.HE2021

Evidence for hierarchical black hole mergers in the second LIGO--Virgo gravitational-wave catalog

Chase Kimball, Colm Talbot, Christopher P. L. Berry +10

astro-ph.IM2023

A Unified $p_\mathrm{astro}$ for Gravitational Waves: Consistently Combining Information from Multiple Search Pipelines

Sharan Banagiri, Christopher P. L. Berry, Gareth S. Cabourn Davies +2

astro-ph.HE2021

One Channel to Rule Them All? Constraining the Origins of Binary Black Holes using Multiple Formation Pathways

Michael Zevin, Simone S. Bavera, Christopher P. L. Berry +7

astro-ph.SR2019

Eclipses of continuous gravitational waves as a probe of stellar structure

Pablo Marchant, Katelyn Breivik, Christopher P. L. Berry +2

astro-ph.HE2021

The impact of mass-transfer physics on the observable properties of field binary black hole populations

Simone S. Bavera, Tassos Fragos, Michael Zevin +13

astro-ph.HE2020

Localization of Compact Binary Sources with Second Generation Gravitational-wave Interferometer Networks

Chris Pankow, Monica Rizzo, Kaushik Rao +2

astro-ph.HE2020

Black hole genealogy: Identifying hierarchical mergers with gravitational waves

Chase Kimball, Colm Talbot, Christopher P. L. Berry +4

astro-ph.HE2012

Extreme-mass-ratio bursts from the Galactic Centre

Christopher P. L. Berry, Jonathan R. Gair

astro-ph.HE2016

Parameter estimation on gravitational waves from neutron-star binaries with spinning components

Ben Farr, Christopher P. L. Berry, Will M. Farr +14

astro-ph.SR2021

The role of mass transfer and common envelope evolution in the formation of merging binary black holes

Pablo Marchant, Kaliroë M. W. Pappas, Monica Gallegos-Garcia +4

astro-ph.HE2023

Investigating the Lower Mass Gap with Low Mass X-ray Binary Population Synthesis

Jared C. Siegel, Ilia Kiato, Vicky Kalogera +14

astro-ph.HE2015

Inference on gravitational waves from coalescences of stellar-mass compact objects and intermediate-mass black holes

Carl-Johan Haster, Zhilu Wang, Christopher P. L. Berry +3

astro-ph.HE2019

The unique potential of extreme mass-ratio inspirals for gravitational-wave astronomy

Christopher P. L. Berry, Scott A. Hughes, Carlos F. Sopuerta +6

stat.ML2016

Fast methods for training Gaussian processes on large data sets

Christopher J. Moore, Alvin J. K. Chua, Christopher P. L. Berry +1

astro-ph.SR2022

Active Learning for Computationally Efficient Distribution of Binary Evolution Simulations

Kyle Akira Rocha, Jeff J. Andrews, Christopher P. L. Berry +13

gr-qc2025

Advancing Glitch Classification in Gravity Spy: Multi-view Fusion with Attention-based Machine Learning for Advanced LIGO's Fourth Observing Run

Yunan Wu, Michael Zevin, Christopher P. L. Berry +7

gr-qc2016

Testing general relativity using golden black-hole binaries

Abhirup Ghosh, Archisman Ghosh, Nathan K. Johnson-McDaniel +8

astro-ph.HE2026

Revealing massive black hole astrophysics: The potential of hierarchical inference with extreme mass-ratio inspiral observations

Shashwat Singh, Christian E. A. Chapman-Bird, Christopher P. L. Berry +1

The paper investigates how observations of extreme mass-ratio inspirals by LISA can be used with hierarchical Bayesian inference to measure massive black hole population properties…

#extreme mass-ratio inspirals#hierarchical Bayesian inference#massive black hole demographics#LISA mission
gr-qc2010

Gravitational wave energy spectrum of a parabolic encounter

Christopher P. L. Berry, Jonathan R. Gair

gr-qc2018

Science with the space-based interferometer LISA. V: Extreme mass-ratio inspirals

Stanislav Babak, Jonathan Gair, Alberto Sesana +7

astro-ph.HE2022

The formation of $30\,M_\odot$ merging black holes at solar metallicity

Simone S. Bavera, Tassos Fragos, Emmanouil Zapartas +11

astro-ph.SR2022

POSYDON: A General-Purpose Population Synthesis Code with Detailed Binary-Evolution Simulations

Tassos Fragos, Jeff J. Andrews, Simone S. Bavera +22

gr-qc2020

The Missing Link in Gravitational-Wave Astronomy: Discoveries waiting in the decihertz range

Manuel Arca Sedda, Christopher P. L. Berry, Karan Jani +27