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Most matter in the Universe is invisible and unknown, which is called dark matter.
CP \mathrm{CP} Conservation in the Presence of Pseudoparticles
R. D. Peccei and Helen R. Quinn · 1977
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CP \mathrm{CP} Conservation in the Presence of Pseudoparticles
R. D. Peccei and Helen R. Quinn · 1977
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Cosmology of the invisible axion
John Preskill, Mark B. Wise, and Frank Wilczek · 1983
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A cosmological bound on the invisible axion
L.F. Abbott and P. Sikivie · 1983
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The not-so-harmless axion
Michael Dine and Willy Fischler · 1983
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Cosmology of the invisible axion
John Preskill, Mark B. Wise, and Frank Wilczek · 1983
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A cosmological bound on the invisible axion
L.F. Abbott and P. Sikivie · 1983
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The not-so-harmless axion
Michael Dine and Willy Fischler · 1983
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Cosmology of spontaneously broken gauge family symmetry with axion solution of strong CP-problem
Zurab Berezhiani and Maxim Yu. Khlopov · 1991
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Cosmology of spontaneously broken gauge family symmetry with axion solution of strong CP-problem
Zurab Berezhiani and Maxim Yu. Khlopov · 1991
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Primordial background of cosmological axions
Z. G. Berezhiani, A. S. Sakharov, and M. Yu. Khlopov · 1992
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Primordial background of cosmological axions
Z. G. Berezhiani, A. S. Sakharov, and M. Yu. Khlopov · 1992
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The nonhomogeneity problem for the primordial axion field
A.S. Sakharov and M.Yu. Khlopov · 1994
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The nonhomogeneity problem for the primordial axion field
A.S. Sakharov and M.Yu. Khlopov · 1994
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SN 1987A gamma-ray limits on the conversion of pseudoscalars
Jack W. Brockway, Eric D. Carlson, and Georg G. Raffelt · 1996
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Large-scale modulation of the distribution of coherent oscillations of a primordial axion field in the universe
A. S. Sakharov, D. D. Sokoloff, and M. Yu. Khlopov · 1996
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The Structure of Cold Dark Matter Halos
Julio F. Navarro, Carlos S. Frenk, and Simon D. M. White · 1996
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SN 1987A gamma-ray limits on the conversion of pseudoscalars
Jack W. Brockway, Eric D. Carlson, and Georg G. Raffelt · 1996
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Large-scale modulation of the distribution of coherent oscillations of a primordial axion field in the universe
A. S. Sakharov, D. D. Sokoloff, and M. Yu. Khlopov · 1996
Earlier work this paper cites.
The Structure of Cold Dark Matter Halos
Julio F. Navarro, Carlos S. Frenk, and Simon D. M. White · 1996
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The nonlinear modulation of the density distribution in standard axionic CDM and its cosmological impact
M.Yu. Khlopov, A.S. Sakharov, and D.D. Sokoloff · 1999
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The nonlinear modulation of the density distribution in standard axionic CDM and its cosmological impact
M.Yu. Khlopov, A.S. Sakharov, and D.D. Sokoloff · 1999
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Improved Experimental Limit on the Electric Dipole Moment of the Neutron
C. A. Baker, D. D. Doyle, P. Geltenbort, K. Green, M. G. D. van der Grinten, P. G. Harris, P. Iaydjiev, S. N. Ivanov, D. J. R. May, J. M. Pendlebury, J. D. Richardson, D. Shiers, and K. F. Smith · 2006
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The Japanese space gravitational wave antenna—DECIGO
Seiji Kawamura, Takashi Nakamura, et al · 2006
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Improved Experimental Limit on the Electric Dipole Moment of the Neutron
C. A. Baker, D. D. Doyle, P. Geltenbort, K. Green, M. G. D. van der Grinten, P. G. Harris, P. Iaydjiev, S. N. Ivanov, D. J. R. May, J. M. Pendlebury, J. D. Richardson, D. Shiers, and K. F. Smith · 2006
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The Japanese space gravitational wave antenna—DECIGO
Seiji Kawamura, Takashi Nakamura, et al · 2006
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Chern–Simons modified general relativity
Stephon Alexander and Nicolás Yunes · 2009
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Chern–Simons modified general relativity
Stephon Alexander and Nicolás Yunes · 2009
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String axiverse
Asimina Arvanitaki, Savas Dimopoulos, Sergei Dubovsky, Nemanja Kaloper, and John March-Russell · 2010
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Ultralight scalar fields and the growth of structure in the Universe
David J. E. Marsh and Pedro G. Ferreira · 2010
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Advanced LIGO: the next generation of gravitational wave detectors
Gregory M Harry · 2010
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Constraining parity violation in gravity with measurements of neutron-star moments of inertia
Nicolás Yunes, Dimitrios Psaltis, Feryal Özel, and Abraham Loeb · 2010
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The Einstein Telescope: a third-generation gravitational wave observatory
M Punturo et al · 2010
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The International Pulsar Timing Array project: using pulsars as a gravitational wave detector
G. Hobbs, A. Archibald, Z. Arzoumanian, et al · 2010
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String axiverse
Asimina Arvanitaki, Savas Dimopoulos, Sergei Dubovsky, Nemanja Kaloper, and John March-Russell · 2010
Earlier work this paper cites.
Ultralight scalar fields and the growth of structure in the Universe
David J. E. Marsh and Pedro G. Ferreira · 2010
Earlier work this paper cites.
Advanced LIGO: the next generation of gravitational wave detectors
Gregory M Harry · 2010
Earlier work this paper cites.
Constraining parity violation in gravity with measurements of neutron-star moments of inertia
Nicolás Yunes, Dimitrios Psaltis, Feryal Özel, and Abraham Loeb · 2010
Earlier work this paper cites.
The Einstein Telescope: a third-generation gravitational wave observatory
M Punturo et al · 2010
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The International Pulsar Timing Array project: using pulsars as a gravitational wave detector
G. Hobbs, A. Archibald, Z. Arzoumanian, et al · 2010
Earlier work this paper cites.
Exploring the string axiverse with precision black hole physics
Asimina Arvanitaki and Sergei Dubovsky · 2011
Cited alongside, same era.
Slowly-rotating stars and black holes in dynamical Chern-Simons gravity
Yacine Ali-Haimoud and Yanbei Chen · 2011
Cited alongside, same era.
The Japanese space gravitational wave antenna: DECIGO
Seiji Kawamura, Masaki Ando, et al · 2011
Cited alongside, same era.
Exploring the string axiverse with precision black hole physics
Asimina Arvanitaki and Sergei Dubovsky · 2011
Cited alongside, same era.
Slowly-rotating stars and black holes in dynamical Chern-Simons gravity
Yacine Ali-Haimoud and Yanbei Chen · 2011
Cited alongside, same era.
The Japanese space gravitational wave antenna: DECIGO
Seiji Kawamura, Masaki Ando, et al · 2011
Cited alongside, same era.
New experimental approaches in the search for axion-like particles
Igor G. Irastorza and Javier Redondo · 2018
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Using the full power of the cosmic microwave background to probe axion dark matter
Renée Hložek, David J E Marsh, and Daniel Grin · 2018
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Exploring the string axiverse and parity violation in gravity with gravitational waves
Daiske Yoshida and Jiro Soda · 2018
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New experimental approaches in the search for axion-like particles
Igor G. Irastorza and Javier Redondo · 2018
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Using the full power of the cosmic microwave background to probe axion dark matter
Renée Hložek, David J E Marsh, and Daniel Grin · 2018
Later among the works it cites.
Exploring the string axiverse and parity violation in gravity with gravitational waves
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Pulsar timing signal from ultralight scalar dark matter
Andrei Khmelnitsky and Valery Rubakov · 2014
Cited alongside, same era.
Constraints on ultralight scalar dark matter from pulsar timing
N. K. Porayko and K. A. Postnov · 2014
Cited alongside, same era.
Pulsar timing signal from ultralight scalar dark matter
Andrei Khmelnitsky and Valery Rubakov · 2014
Cited alongside, same era.
Constraints on ultralight scalar dark matter from pulsar timing
N. K. Porayko and K. A. Postnov · 2014
Cited alongside, same era.
The bosenova and axiverse
Hirotaka Yoshino and Hideo Kodama · 2015
Cited alongside, same era.
Advanced LIGO
J Aasi, B P Abbott, R Abbott, T Abbott, M R Abernathy, K Ackley, C Adams, T Adams, P Addesso, et al · 2015
Cited alongside, same era.
Daiske Yoshida and Jiro Soda · 2018
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Heating of Milky Way disc stars by dark matter fluctuations in cold dark matter and fuzzy dark matter paradigms
Benjamin V Church, Philip Mocz, and Jeremiah P Ostriker · 2019
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Heating of Milky Way disc stars by dark matter fluctuations in cold dark matter and fuzzy dark matter paradigms
Benjamin V Church, Philip Mocz, and Jeremiah P Ostriker · 2019
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Astrophysical Limits on Very Light Axion-like Particles from Chandra Grating Spectroscopy of NGC 1275
Christopher S. Reynolds, M. C. David Marsh, Helen R. Russell, Andrew C. Fabian, Robyn Smith, Francesco Tombesi, and Sylvain Veilleux · 2020
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Gravitational Landau damping for massive scalar modes
Fabio Moretti, Flavio Bombacigno, and Giovanni Montani · 2020
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The landscape of QCD axion models
Luca Di Luzio, Maurizio Giannotti, Enrico Nardi, and Luca Visinelli · 2020
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Constraining the gravitational coupling of axion dark matter at LIGO
Sunghoon Jung, TaeHun Kim, Jiro Soda, and Yuko Urakawa · 2020
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Resonant gravitational waves in dynamical Chern–Simons–axion gravity
Tomohiro Fujita, Ippei Obata, Takahiro Tanaka, and Kei Yamada · 2020
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Science case for the Einstein telescope
Michele Maggiore, Chris Van Den Broeck, Nicola Bartolo, Enis Belgacem, Daniele Bertacca, Marie Anne Bizouard, Marica Branchesi, Sebastien Clesse, Stefano Foffa, Juan García-Bellido, et al · 2020
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Astrophysical Limits on Very Light Axion-like Particles from Chandra Grating Spectroscopy of NGC 1275
Christopher S. Reynolds, M. C. David Marsh, Helen R. Russell, Andrew C. Fabian, Robyn Smith, Francesco Tombesi, and Sylvain Veilleux · 2020
Later among the works it cites.
Gravitational Landau damping for massive scalar modes
Fabio Moretti, Flavio Bombacigno, and Giovanni Montani · 2020
Later among the works it cites.
The landscape of QCD axion models
Luca Di Luzio, Maurizio Giannotti, Enrico Nardi, and Luca Visinelli · 2020
Later among the works it cites.
Constraining the gravitational coupling of axion dark matter at LIGO
Sunghoon Jung, TaeHun Kim, Jiro Soda, and Yuko Urakawa · 2020
Later among the works it cites.
Resonant gravitational waves in dynamical Chern–Simons–axion gravity
Tomohiro Fujita, Ippei Obata, Takahiro Tanaka, and Kei Yamada · 2020
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Science case for the Einstein telescope
Michele Maggiore, Chris Van Den Broeck, Nicola Bartolo, Enis Belgacem, Daniele Bertacca, Marie Anne Bizouard, Marica Branchesi, Sebastien Clesse, Stefano Foffa, Juan García-Bellido, et al · 2020
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Invisible Axion Search Methods
Pierre Sikivie · 2021
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GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo during the First Half of the Third Observing Run
R. Abbott, T. D. Abbott, et al · 2021
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GWTC-3: Compact Binary Coalescences Observed by LIGO and Virgo During the Second Part of the Third Observing Run
R. Abbott et al · 2021
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Ultra-light dark matter
Elisa G. M. Ferreira · 2021
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Astrophysical and Theoretical Physics Implications from Multimessenger Neutron Star Observations
Hector O. Silva, A. Miguel Holgado, Alejandro Cárdenas-Avendaño, and Nicolás Yunes · 2021
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LISA Sensitivity and SNR Calculations, 2021
Stanislav Babak, Martin Hewitson, and Antoine Petiteau · 2021
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Invisible Axion Search Methods
Pierre Sikivie · 2021
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GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo during the First Half of the Third Observing Run
R. Abbott, T. D. Abbott, et al · 2021
Later among the works it cites.
GWTC-3: Compact Binary Coalescences Observed by LIGO and Virgo During the Second Part of the Third Observing Run
R. Abbott et al · 2021
Later among the works it cites.
Ultra-light dark matter
Elisa G. M. Ferreira · 2021
Later among the works it cites.
Astrophysical and Theoretical Physics Implications from Multimessenger Neutron Star Observations
Hector O. Silva, A. Miguel Holgado, Alejandro Cárdenas-Avendaño, and Nicolás Yunes · 2021
Later among the works it cites.
LISA Sensitivity and SNR Calculations, 2021
Stanislav Babak, Martin Hewitson, and Antoine Petiteau · 2021
Later among the works it cites.
Axion dark matter: What is it and why now?
Francesca Chadha-Day, John Ellis, and David J. E. Marsh · 2022
Closest in time.
Axion-like Particles Implications for High-Energy Astrophysics
Giorgio Galanti and Marco Roncadelli · 2022
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Chern-simons axion gravity and neutrino oscillations
Gaetano Lambiase, Leonardo Mastrototaro, and Luca Visinelli · 2022
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Constraining scalar-tensor theories using neutron star mass and radius measurements, 2022
Semih Tuna, Kıvanç İ. Ünlütürk, and Fethi M. Ramazanoğlu · 2022
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Axion dark matter: What is it and why now?
Francesca Chadha-Day, John Ellis, and David J. E. Marsh · 2022
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Axion-like Particles Implications for High-Energy Astrophysics
Giorgio Galanti and Marco Roncadelli · 2022
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Chern-simons axion gravity and neutrino oscillations
Gaetano Lambiase, Leonardo Mastrototaro, and Luca Visinelli · 2022
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Constraining scalar-tensor theories using neutron star mass and radius measurements, 2022
Semih Tuna, Kıvanç İ. Ünlütürk, and Fethi M. Ramazanoğlu · 2022
Closest in time.