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We optimize the third-generation gravitational-wave detector to maximize the range to detect core-collapse supernovae.
Monte carlo sampling methods using markov chains and their applications
W Keith Hastings · 1970
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The stellar initial mass function
John M Scalo · 1986
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Recycling in laser-interferometric gravitational-wave detectors
Brian J Meers · 1988
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Properties of the nova population in m31
Massimo Capaccioli, Massimo Della Valle, Mauro D’Onofrio, and Leonida Rosino · 1989
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An empirical test for the metallicity sensitivity of the cepheid period-luminosity relation
Wendy L Freedman and Barry F Madore · 1990
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Galactic and extragalactic supernova rates
Sidney van den Bergh and Gustav A Tammann · 1991
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Observing binary inspiral in gravitational radiation: One interferometer
Lee Samuel Finn and David F Chernoff · 1993
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The hubble constant and virgo cluster distance from observations of cepheid variables
Michael J Pierce, Douglas L Welch, Robert D McClure, Sidney van den Bergh, Renè Racine, and Peter B Stetson · 1994
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The galactic supernova rate
GA Tammann, W Loeffler, and A Schroeder · 1994
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The Galactic supernova rate
G. A. Tammann, W. Loeffler, and A. Schroeder · 1994
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Particle swarm optimization
James Kennedy and Russell Eberhart · 1995
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LISA: Laser interferometer space antenna for gravitational wave measurements
Karsten Danzmann, LISA Study Team, and Others · 1996
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Quantum nondemolition measurements: the route from toys to tools
Vladimir B Braginsky and F Ya Khalili · 1996
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The rate of supernovae from the combined sample of five searches
E Cappellaro, M Turatto, D Yu Tsvetkov, OS Bartunov, C Pollas, R Evans, and M Hamuy · 1997
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Gamma-ray line signals from 26al and 60fe in the galaxies of the local group
FX Timmes and SE Woosley · 1997
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Angular and frequency response of lisa
Roland Schilling · 1997
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Supernovae in the nuclear regions of starburst galaxies
S Mattila and WPS Meikle · 2001
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Quantum noise in laser-interferometer gravitational-wave detectors with a heterodyne readout scheme
Alessandra Buonanno, Yanbei Chen, and Nergis Mavalvala · 2003
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Improving the sensitivity to gravitational-wave sources by modifying the input-output optics of advanced interferometers
Alessandra Buonanno and Yanbei Chen · 2004
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Presupernova Evolution of Differentially Rotating Massive Stars Including Magnetic Fields
A Heger, S E Woosley, and H C Spruit · 2005
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Simulations of Magnetically Driven Supernova and Hypernova Explosions in the Context of Rapid Rotation
A Burrows, L Dessart, E Livne, C.˜D. Ott, and J Murphy · 2007
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Demonstration and comparison of tuned and detuned signal recycling in a large-scale gravitational wave detector
Stefan Hild, Hartmut Grote, Martin Hewitson, Harald Lück, JR Smith, KA Strain, Benno Willke, and Karsten Danzmann · 2007
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A Model for Gravitational Wave Emission from Neutrino-Driven Core-Collapse Supernovae
J. W. Murphy, C. D. Ott, and A. Burrows · 2009
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Length sensing and control of a prototype advanced interferometric gravitational wave detector
Robert Lawrence Ward · 2010
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Nearby supernova rates from the Lick Observatory Supernova Search–II. The observed luminosity functions and fractions of supernovae in a complete sample
Weidong Li, Jesse Leaman, Ryan Chornock, Alexei V Filippenko, Dovi Poznanski, Mohan Ganeshalingam, Xiaofeng Wang, Maryam Modjaz, Saurabh Jha, Ryan J Foley, and Others · 2011
Cited alongside, same era.
Nearby supernova rates from the Lick Observatory Supernova Search–III. The rate–size relation, and the rates as a function of galaxy Hubble type and colour
Weidong Li, Ryan Chornock, Jesse Leaman, Alexei V Filippenko, Dovi Poznanski, Xiaofeng Wang, Mohan Ganeshalingam, and Filippo Mannucci · 2011
Cited alongside, same era.
Core-collapse astrophysics with a five-megaton neutrino detector
Matthew D Kistler, Hasan Yüksel, Shin’ichiro Ando, John F Beacom, and Yoichiro Suzuki · 2011
Cited alongside, same era.
The Type II Supernova Rate in z ∼ \sim 0.1 Galaxy Clusters from the Multi-Epoch Nearby Cluster Survey
M L Graham, D J Sand, C J Bildfell, C J Pritchet, D Zaritsky, H Hoekstra, D W Just, S Herbert-Fort, S Sivanandam, and R J Foley · 2012
Cited alongside, same era.
Correlated Signatures of Gravitational-Wave and Neutrino Emission in Three-Dimensional General-Relativistic Core-Collapse Supernova Simulations
Takami Kuroda, Kei Kotake, Kazuhiro Hayama, and Tomoya Takiwaki · 2017
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Exploring the sensitivity of next generation gravitational wave detectors
Benjamin P Abbott, R Abbott, T D Abbott, M R Abernathy, K Ackley, C Adams, P Addesso, R X Adhikari, V B Adya, C Affeldt, and Others · 2017
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Frequency-dependent responses in third generation gravitational-wave detectors
Reed Essick, Salvatore Vitale, and Matthew Evans · 2017
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GWTC-1: A Gravitational-Wave Transient Catalog of Compact Binary Mergers Observed by LIGO and Virgo during the First and Second Observing Runs
The LIGO Scientific Collaboration, the Virgo Collaboration, B.˜P. Abbott, R Abbott, T.˜D. Abbott, S Abraham, F Acernese, K Ackley, C Adams, R.˜X. Adhikari, and Et al · 2018
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The Gravitational Wave Signal from Core-collapse Supernovae
V. Morozova, D. Radice, A. Burrows, and D. Vartanyan · 2018
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A comparison between star formation rate diagnostics and rate of core collapse supernovae within 11 Mpc
M. T. Botticella, S. J. Smartt, R. C. Kennicutt, E. Cappellaro, M. Sereno, and J. C. Lee · 2012
Cited alongside, same era.
Core-collapse supernovae missed by optical surveys
S Mattila, Tomas Dahlén, Andreas Efstathiou, Erkki Kankare, Jens Melinder, Almudena Alonso-Herrero, MÁ Pérez-Torres, S Ryder, P Väisänen, and Göran Östlin · 2012
Cited alongside, same era.
Observing the next galactic supernova
Scott M Adams, CS Kochanek, John F Beacom, Mark R Vagins, and KZ Stanek · 2013
Cited alongside, same era.
Advanced virgo: a second-generation interferometric gravitational wave detector
F Acernese, M Agathos, K Agatsuma, D Aisa, N Allemandou, A Allocca, J Amarni, P Astone, G Balestri, G Ballardin, et al · 2014
Cited alongside, same era.
Measuring the angular momentum distribution in core-collapse supernova progenitors with gravitational waves
Ernazar Abdikamalov, Sarah Gossan, Alexandra M DeMaio, and Christian D Ott · 2014
Cited alongside, same era.
Gravitational wave signatures from low-mode spiral instabilities in rapidly rotating supernova cores
T. Kuroda, T. Takiwaki, and K. Kotake · 2014
Cited alongside, same era.
Constraining the equation of state of neutron stars from binary mergers
Kentaro Takami, Luciano Rezzolla, and Luca Baiotti · 2014
Cited alongside, same era.
Advanced ligo
Junaid Aasi, BP Abbott, Richard Abbott, Thomas Abbott, MR Abernathy, Kendall Ackley, Carl Adams, Thomas Adams, Paolo Addesso, RX Adhikari, et al · 2015
Cited alongside, same era.
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Jade Powell and Bernhard Müller · 2018
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A high-resolution study of presupernova core structure
Tuguldur Sukhbold, SE Woosley, and Alexander Heger · 2018
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The Gravitational Wave Signal from Core-collapse Supernovae
Viktoriya Morozova, David Radice, Adam Burrows, and David Vartanyan · 2018
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LIGO Algorithm Library - LALSuite
LIGO Scientific Collaboration · 2018
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Towards the design of gravitational-wave detectors for probing neutron-star physics
Haixing Miao, Huan Yang, and Denis Martynov · 2018
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Optimizing LIGO with LISA forewarnings to improve black-hole spectroscopy
Rhondale Tso, Davide Gerosa, and Yanbei Chen · 2018
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Neutron-star radius from a population of binary neutron star mergers
Sukanta Bose, Kabir Chakravarti, Luciano Rezzolla, BS Sathyaprakash, and Kentaro Takami · 2018
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Gw170817: Implications for the stochastic gravitational-wave background from compact binary coalescences
Benjamin P Abbott, R Abbott, TD Abbott, F Acernese, K Ackley, C Adams, T Adams, P Addesso, RX Adhikari, VB Adya, et al · 2018
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New binary black hole mergers in the second observing run of advanced ligo and advanced virgo
Tejaswi Venumadhav, Barak Zackay, Javier Roulet, Liang Dai, and Matias Zaldarriaga · 2019
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1-ogc: The first open gravitational-wave catalog of binary mergers from analysis of public advanced ligo data
Alexander H Nitz, Collin Capano, Alex B Nielsen, Steven Reyes, Rebecca White, Duncan A Brown, and Badri Krishnan · 2019
Closest in time.
Universal relations for gravitational-wave asteroseismology of proto-neutron stars
Alejandro Torres-Forné, Pablo Cerdá-Durán, Martin Obergaulinger, Bernhard Muller, and José A Font · 2019
Closest in time.
BP Abbott, R Abbott, TD Abbott, S Abraham, F Acernese, K Ackley, C Adams, RX Adhikari, VB Adya, C Affeldt, et al · 2019
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Characterizing the Gravitational Wave Signal from Core-collapse Supernovae
D. Radice, V. Morozova, A. Burrows, D. Vartanyan, and H. Nagakura · 2019
Closest in time.
FORNAX: A Flexible Code for Multiphysics Astrophysical Simulations
M. Aaron Skinner, Joshua C. Dolence, Adam Burrows, David Radice, and David Vartanyan · 2019
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Three-dimensional supernova explosion simulations of 9-, 10-, 11-, 12-, and 13-M⊙ stars
Adam Burrows, David Radice, and David Vartanyan · 2019
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Exploring the sensitivity of gravitational wave detectors to neutron star physics
Denis Martynov, Haixing Miao, Huan Yang, Francisco Hernandez Vivanco, Eric Thrane, Rory Smith, Paul Lasky, William E East, Rana Adhikari, Andreas Bauswein, and Others · 2019
Closest in time.
Identifying a first-order phase transition in neutron-star mergers through gravitational waves
Andreas Bauswein, Niels-Uwe F Bastian, David B Blaschke, Katerina Chatziioannou, James A Clark, Tobias Fischer, and Micaela Oertel · 2019
Closest in time.
Characterizing the Gravitational Wave Signal from Core-collapse Supernovae
David Radice, Viktoriya Morozova, Adam Burrows, David Vartanyan, and Hiroki Nagakura · 2019
Closest in time.