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When the light from a distant object passes very near to a foreground galaxy or cluster, gravitational lensing can cause it to appear as multiple images on the sky.
Lens-like action of a star by the deviation of light in the gravitational field
Einstein, A · 1936
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On the possibility of determining hubble’s parameter and the masses of galaxies from the gravitational lens effect
Refsdal, S · 1964
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Analytical models for galactic nuclei
Zhao, H., · 1996
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Observational evidence from supernovae for an accelerating universe and a cosmological constant
Riess, A. G. et al · 1998
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Measurements of ω \omega and λ \lambda from 42 high-redshift supernovae
Perlmutter, S. et al · 1999
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Seeing double: Strong gravitational lensing of high-redshift supernovae
Holz, D. E · 2001
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MACS: A quest for the most massive galaxy clusters in the universe
Ebeling, H., Edge, A. C. & Henry, J. P · 2001
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COSMOGRAIL. XIX. Time delays in 18 strongly lensed quasars from 15 years of optical monitoring
Millon, M. et al · 2002
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Nested sampling
Skilling, J · 2004
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Quantitative interpretation of quasar microlensing light curves
Kochanek, C. S · 2004
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The supernova rate per unit mass
Mannucci, F. et al · 2005
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TDCOSMO. II. Six new time delays in lensed quasars from high-cadence monitoring at the MPIA 2.2 m telescope
Millon, M. et al · 2006
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The Supernova Legacy Survey: Measurement of Ω M \Omega_{M} , Ω Λ \Omega_{\Lambda} and w
Astier, P. et al · 2006
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The Carnegie Supernova Project: The low-redshift survey
Hamuy, M. et al · 2006
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Determination of the Hubble constant, the intrinsic scatter of luminosities of Type Ia supernovae, and evidence for nonstandard dust in other galaxies
Wang, X., Wang, L., Pain, R., Zhou, X. & Li, Z · 2006
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A Bayesian approach to strong lensing modelling of galaxy clusters
Jullo, E. et al · 2007
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On the origin of the Type Ia supernova width-luminosity relation
Kasen, D. & Woosley, S. E · 2007
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TDCOSMO. IV. Hierarchical time-delay cosmography – joint inference of the Hubble constant and galaxy density profiles
Birrer, S. et al · 2007
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SALT2: using distant supernovae to improve the use of type Ia supernovae as distance indicators
Guy, J. et al · 2007
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TDCOSMO. V. Strategies for precise and accurate measurements of the Hubble constant with strong lensing
Birrer, S. & Treu, T · 2008
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The Sloan Digital Sky Survey-II Supernova Survey: Technical summary
Frieman, J. A. et al · 2008
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The Sloan Digital Sky Survey-II Supernova Survey: Search algorithm and follow-up observations
Sako, M. et al · 2008
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Progenitors of core-collapse supernovae
Smartt, S. J · 2009
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SNANA: A public software package for supernova analysis
Kessler, R. et al · 2009
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The He-rich core-collapse supernova 2007Y: Observations from x-ray to radio wavelengths
Stritzinger, M. et al · 2009
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Near-IR search for lensed supernovae behind galaxy clusters. I. Observations and transient detection efficiency
Stanishev, V. et al · 2009
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Near-IR search for lensed supernovae behind galaxy clusters. II. First detection and future prospects
Goobar, A. et al · 2009
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LoCuSS: First results from strong-lensing analysis of 20 massive galaxy clusters at z = 0.2
Richard, J. et al · 2010
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Type II-P supernovae from the SDSS-II supernova survey and the standardized candle method
D’Andrea, C. B. et al · 2010
Cited alongside, same era.
Results from the supernova photometric classification challenge
Kessler, R. et al · 2010
Cited alongside, same era.
LENSTOOL: A gravitational lensing software for modeling mass distribution of galaxies and clusters (strong and weak regime)
Kneib, J.-P. et al · 2011
Cited alongside, same era.
Near-IR search for lensed supernovae behind galaxy clusters. III. Implications for cluster modeling and cosmology
Riehm, T. et al · 2011
Cited alongside, same era.
Recent star formation in a massive slowly quenched lensed quiescent galaxy at z = 1.88
Akhshik, M. et al · 2012
Cited alongside, same era.
The DrizzlePac handbook (The Space Telescope Science Institute, 2012)
The Astropy project: Building an open-science project and status of the v2.0 core package
The Astropy Collaboration et al · 2018
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Strong-lensing analysis of A2744 with MUSE and hubble frontier fields images
Mahler, G. et al · 2018
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Resolving quiescent galaxies at z
Newman, A. B., Belli, S., Ellis, R. S. & Patel, S. G · 2018
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Extending supernova spectral templates for next-generation space telescope observations
Pierel, J. D. R. et al · 2018
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Precise time delays from strongly gravitationally lensed Type Ia supernovae with chromatically microlensed images
Goldstein, D. A., Nugent, P. E., Kasen, D. N. & Collett, T. E · 2018
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The impact of microlensing on the standardization of strongly lensed Type Ia supernovae
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Gonzaga, S. & et al · 2012
Cited alongside, same era.
The rates and time-delay distribution of multiply imaged supernovae behind lensing clusters
Li, X., Hjorth, J. & Richard, J · 2012
Cited alongside, same era.
Carnegie supernova project: Spectroscopic observations of core collapse supernovae
Morrell, N. I · 2012
Cited alongside, same era.
Classifying supernovae using only galaxy data
Foley, R. J. & Mandel, K · 2013
Cited alongside, same era.
Detection of the gravitational lens magnifying a Type Ia supernova
Quimby, R. M. et al · 2014
Cited alongside, same era.
Mass and magnification maps for the Hubble Space Telescope Frontier Fields clusters: Implications for high-redshift studies
Richard, J. et al · 2014
Cited alongside, same era.
Type Ia supernova rate measurements to redshift 2.5 from CANDELS: Searching for prompt explosions in the early universe
Rodney, S. A. et al · 2014
Cited alongside, same era.
Foxley-Marrable, M., Collett, T. E., Vernardos, G., Goldstein, D. A. & Bacon, D · 2018
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A joint microlensing analysis of lensing mass and accretion disc models
Vernardos, G · 2018
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Searching for supernovae in the multiply-imaged galaxies behind the gravitational telescope A370
Petrushevska, T. et al · 2018
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Large magellanic cloud cepheid standards provide a 1% foundation for the determination of the hubble constant and stronger evidence for physics beyond λ \lambda CDM
Riess, A. G., Casertano, S., Yuan, W., Macri, L. M. & Scolnic, D · 2019
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Tensions between the early and late Universe
Verde, L., Treu, T. & Riess, A. G · 2019
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LSST: From science drivers to reference design and anticipated data products
Ivezic, Z. et al · 2019
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Magnification, dust and time-delay constraints from the first resolved strongly lensed Type Ia supernova iPTF16geu
Dhawan, S. et al · 2019
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Rates and properties of supernovae strongly gravitationally lensed by elliptical galaxies in time-domain imaging surveys
Goldstein, D. A., Nugent, P. E. & Goobar, A · 2019
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MPDAF - a python package for the analysis of VLT/MUSE data
Piqueras, L. et al · 2019
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Probing 3D structure with a large MUSE mosaic: extending the mass model of Frontier Field Abell 370
Lagattuta, D. J. et al · 2019
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Turning gravitationally lensed supernovae into cosmological probes
Pierel, J. D. R. & Rodney, S · 2019
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Strongly lensed SNe Ia in the era of LSST: observing cadence for lens discoveries and time-delay measurements
Huber, S. et al · 2019
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Impact of the 3D source geometry on time-delay measurements of lensed type-Ia supernovae
Bonvin, V. et al · 2019
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Astrometric requirements for strong lensing time-delay cosmography
Birrer, S. & Treu, T · 2019
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Planck 2018 results. VI. Cosmological parameters
Planck Collaboration et al · 2020
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The data processing pipeline for the MUSE instrument
Weilbacher, P. M. et al · 2020
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Magnification, dust, and time-delay constraints from the first resolved strongly lensed Type Ia supernova iPTF16geu
Dhawan, S. et al · 2020
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Strongly lensed supernovae in well-studied galaxy clusters with the Vera C. Rubin Observatory
Petrushevska, T · 2020
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Discovery of probable multiply-imaged supernova in archival HST data
Brammer, G. et al · 2021
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Projected cosmological constraints from strongly lensed supernovae with the roman space telescope
Pierel, J. D. R. et al · 2021
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A synthetic Roman Space Telescope High-Latitude Imaging Survey: simulation suite and the impact of wavefront errors on weak gravitational lensing
Troxel, M. A. et al · 2021
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Projected Cosmological constraints from strongly lensed supernovae with the Roman Space Telescope
Pierel, J. D. R. et al · 2021
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