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The $\Lambda$ Cold Dark Matter model ($\Lambda$CDM) represents the current standard model in cosmology.
The Field Equations of Gravitation
Albert Einstein · 1915
Earlier work this paper cites.
Cosmological Considerations in the General Theory of Relativity
Albert Einstein · 1917
Earlier work this paper cites.
Einstein’s theory of gravitation and its astronomical consequences, Third Paper
W. de Sitter · 1917
Earlier work this paper cites.
A homogeneous Universe of constant mass and growing radius accounting for the radial velocity of extragalactic nebulae
Georges Lemaitre · 1927
Earlier work this paper cites.
Effect of Inhomogeneity on Cosmological Models
R. C. Tolman · 1934
Earlier work this paper cites.
Spherically symmetrical models in general relativity
H. Bondi · 1947
Earlier work this paper cites.
On the possibility of determining Hubble’s parameter and the masses of galaxies from the gravitational lens effect
S. Refsdal · 1964
Earlier work this paper cites.
Cosmology: A search for two numbers
Allan R. Sandage · 1970
Earlier work this paper cites.
The Large Scale Structure of Space-Time
S.W. Hawking and G.F.R. Ellis · 1973
Earlier work this paper cites.
Forbidden Mass Range for Spin-2 Field Theory in De Sitter Space-time
Atsushi Higuchi · 1987
Earlier work this paper cites.
Small-Scale Cosmological Perturbations: an Analytic Approach
W. Hu and N. Sugiyama · 1996
Earlier work this paper cites.
The Expanding Universe
G. A. Lemaître and M. A. H. MacCallum · 1997
Earlier work this paper cites.
Observational evidence from supernovae for an accelerating universe and a cosmological constant
Adam G. Riess et al · 1998
Earlier work this paper cites.
Baryonic Features in the Matter Transfer Function
D. J. Eisenstein and W. Hu · 1998
Earlier work this paper cites.
On the Possibility of a world with constant negative curvature of space
A. Friedmann · 1999
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Measurements of Omega and Lambda from 42 high redshift supernovae
S. Perlmutter et al · 1999
Earlier work this paper cites.
Cosmic confusion: Degeneracies among cosmological parameters derived from measurements of microwave background anisotropies
G. Efstathiou and J. R. Bond · 1999
Earlier work this paper cites.
Cosmic microwave background anisotropies
Wayne Hu and Scott Dodelson · 2002
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A Phantom menace?
R. R. Caldwell · 2002
Earlier work this paper cites.
Black hole mass decreasing due to phantom energy accretion
E. Babichev, V. Dokuchaev, and Yu. Eroshenko · 2004
Earlier work this paper cites.
Confronting Lemaitre-Tolman-Bondi models with Observational Cosmology
Juan Garcia-Bellido and Troels Haugboelle · 2008
Earlier work this paper cites.
Does the mass of a black hole decrease due to the accretion of phantom energy
Changjun Gao, Xuelei Chen, Valerio Faraoni, and You-Gen Shen · 2008
Earlier work this paper cites.
Evolution of primordial black holes in a radiation and phantom energy environment
Daniel C. Guariento, J. E. Horvath, P. S. Custodio, and J. A. de Freitas Pacheco · 2008
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A Redetermination of the Hubble Constant with the Hubble Space Telescope from a Differential Distance Ladder
A. G. Riess, L. Macri, S. Casertano, M. Sosey, H. Lampeitl, H. C. Ferguson, A. V. Filippenko, S. W. Jha, W. Li, R. Chornock, and D. Sarkar · 2009
Cited alongside, same era.
First-Year Sloan Digital Sky Survey-II (SDSS-II) Supernova Results: Constraints on Nonstandard Cosmological Models
J. Sollerman, E. Mörtsell, T. M. Davis, M. Blomqvist, B. Bassett, A. C. Becker, D. Cinabro, A. V. Filippenko, R. J. Foley, J. Frieman, P. Garnavich, H. Lampeitl, J. Marriner, R. Miquel, R. C. Nichol, M. W. Richmond, M. Sako, D. P. Schneider, M. Smith, J. T. Vanderplas, and J. C. Wheeler · 2009
Cited alongside, same era.
Supernovae as seen by off-center observers in a local void
M. Blomqvist and E. Mörtsell · 2010
Cited alongside, same era.
On the use of black hole binaries as probes of local dark energy properties
J. Enander and E. Mörtsell · 2010
Planck 2015 results. XIII. Cosmological parameters
Planck Collaboration, P. A. R. Ade, N. Aghanim, M. Arnaud, M. Ashdown, J. Aumont, C. Baccigalupi, A. J. Banday, R. B. Barreiro, J. G. Bartlett, and et al · 2016
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A 2.4% Determination of the Local Value of the Hubble Constant
A. G. Riess, L. M. Macri, S. L. Hoffmann, D. Scolnic, S. Casertano, A. V. Filippenko, B. E. Tucker, M. J. Reid, D. O. Jones, J. M. Silverman, R. Chornock, P. Challis, W. Yuan, P. J. Brown, and R. J. Foley · 2016
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Planck 2015 results. XIV. Dark energy and modified gravity
P. A. R. Ade et al · 2016
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The trouble with H 0
J. L. Bernal, L. Verde, and A. G. Riess · 2016
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The Carnegie-Chicago Hubble Program. I. An Independent Approach to the Extragalactic Distance Scale Using Only Population II Distance Indicators
R. L. Beaton, W. L. Freedman, B. F. Madore, G. Bono, E. K. Carlson, G. Clementini, M. J. Durbin, A. Garofalo, D. Hatt, I. S. Jang, J. A. Kollmeier, M. G. Lee, A. J. Monson, J. A. Rich, V. Scowcroft, M. Seibert, L. Sturch, and S.-C. Yang · 2016
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Cited alongside, same era.
A 3% Solution: Determination of the Hubble Constant with the Hubble Space Telescope and Wide Field Camera 3
A. G. Riess, L. Macri, S. Casertano, H. Lampeitl, H. C. Ferguson, A. V. Filippenko, S. W. Jha, W. Li, and R. Chornock · 2011
Cited alongside, same era.
The Little Rip
Paul H. Frampton, Kevin J. Ludwick, and Robert J. Scherrer · 2011
Cited alongside, same era.
On Non-Linear Actions for Massive Gravity
S.F. Hassan and Rachel A. Rosen · 2011
Cited alongside, same era.
Carnegie Hubble Program: A Mid-infrared Calibration of the Hubble Constant
W. L. Freedman, B. F. Madore, V. Scowcroft, C. Burns, A. Monson, S. E. Persson, M. Seibert, and J. Rigby · 2012
Cited alongside, same era.
The Hubble constant and new discoveries in cosmology
S. H. Suyu, T. Treu, R. D. Blandford, W. L. Freedman, S. Hilbert, C. Blake, J. Braatz, F. Courbin, J. Dunkley, L. Greenhill, E. Humphreys, S. Jha, R. Kirshner, K. Y. Lo, L. Macri, B. F. Madore, P. J. Marshall, G. Meylan, J. Mould, B. Reid, M. Reid, A. Riess, D. Schlegel, V. Scowcroft, and L. Verde · 2012
Cited alongside, same era.
Dismantling Hubble’s Legacy?
Michael J. Way · 2013
Cited alongside, same era.
Two Accurate Time-delay Distances from Strong Lensing: Implications for Cosmology
S. H. Suyu, M. W. Auger, S. Hilbert, P. J. Marshall, M. Tewes, T. Treu, C. D. Fassnacht, L. V. E. Koopmans, D. Sluse, R. D. Blandford, F. Courbin, and G. Meylan · 2013
Cited alongside, same era.
H0LiCOW - V. New COSMOGRAIL time delays of HE 0435-1223: H 0
V. Bonvin, F. Courbin, S. H. Suyu, P. J. Marshall, C. E. Rusu, D. Sluse, M. Tewes, K. C. Wong, T. Collett, C. D. Fassnacht, T. Treu, M. W. Auger, S. Hilbert, L. V. E. Koopmans, G. Meylan, N. Rumbaugh, A. Sonnenfeld, and C. Spiniello · 2017
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Insensitivity of The Distance Ladder Hubble Constant Determination to Cepheid Calibration Modeling Choices
B. Follin and L. Knox · 2017
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Early Cosmology Constrained
Licia Verde, Emilio Bellini, Cassio Pigozzo, Alan F. Heavens, and Raul Jimenez · 2017
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The effect of inhomogeneities on dark energy constraints
Suhail Dhawan, Ariel Goobar, and Edvard Mörtsell · 2017
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iPTF16geu: A multiply imaged, gravitationally lensed type Ia supernova
A. Goobar et al · 2017
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A Spectroscopic Survey of the Fields of 28 Strong Gravitational Lenses: Implications for H 0 H_{0}
Michelle L. Wilson, Ann I. Zabludoff, Charles R. Keeton, Kenneth C. Wong, Kurtis A. Williams, K. Decker French, and Ivelina G. Momcheva · 2017
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Narrowing down the possible explanations of cosmic acceleration with geometric probes
S. Dhawan, A. Goobar, E. Mörtsell, R. Amanullah, and U. Feindt · 2017
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Limits on Brane-World and Particle Dark Radiation from Big Bang Nucleosynthesis and the CMB
Nishanth Sasankan, Mayukh R. Gangopadhyay, Grant J. Mathews, and Motohiko Kusakabe · 2017
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Cosmological histories in bimetric gravity: A graphical approach
Edvard Mortsell · 2017
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Phantom Dark Energy with a Bounded Hamiltonian
Gabriela Barenboim and William H. Kinney · 2017
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The Electromagnetic Counterpart of the Binary Neutron Star Merger LIGO/Virgo GW170817. I. Discovery of the Optical Counterpart Using the Dark Energy Camera
M. Soares-Santos, D. E. Holz, J. Annis, R. Chornock, Dark Energy Survey, and Dark Energy Camera GW-EM Collaboration · 2017
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A gravitational-wave standard siren measurement of the Hubble constant
B. P. Abbott, R. Abbott, T. D. Abbott, F. Acernese, K. Ackley, C. Adams, T. Adams, P. Addesso, R. X. Adhikari, V. B. Adya, and et al · 2017
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An independent determination of the local Hubble constant
D. Fernández-Arenas, E. Terlevich, R. Terlevich, J. Melnick, R. Chávez, F. Bresolin, E. Telles, M. Plionis, and S. Basilakos · 2017
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Measuring the Hubble constant with Type Ia supernovae as near-infrared standard candles
S. Dhawan, S. W. Jha, and B. Leibundgut · 2018
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A Precise Distance to the Host Galaxy of the Binary Neutron Star Merger GW170817 Using Surface Brightness Fluctuations
M. Cantiello, J. B. Jensen, J. P. Blakeslee, E. Berger, A. J. Levan, N. R. Tanvir, G. Raimondo, E. Brocato, K. D. Alexander, P. K. Blanchard, Z. Cano, R. Chornock, S. Covino, P. S. Cowperthwaite, P. D’Avanzo, T. Eftekhari, W. Fong, A. S. Fruchter, J. Hjorth, J. D. Lyman, I. Mandel, R. Margutti, M. Nicholl, V. A. Villar, and P. K. G. Williams · 2018
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A Near-Infrared Period-Luminosity Relation for Miras in NGC 4258, an Anchor for a New Distance Ladder
C. D. Huang, A. G. Riess, S. L. Hoffmann, C. Klein, J. Bloom, W. Yuan, L. M. Macri, D. O. Jones, P. A. Whitelock, S. Casertano, and R. I. Anderson · 2018
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Astronomical Distance Determination in the Space Age. Secondary distance indicators
B. Czerny, R. Beaton, M. Bejger, E. Cackett, M. Dall’Ora, R. F. L. Holanda, J. B. Jensen, S. W. Jha, E. Lusso, T. Minezaki, G. Risaliti, M. Salaris, S. Toonen, and Y. Yoshii · 2018
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