DD
D. L. DePoy
astro-phastro-ph.COastro-ph.EPastro-ph.SRastro-ph.IMastro-ph.GAastro-ph.HEgr-qchep-exphysics.ins-det
On Valency
published · living versionsW_98625dp4·v1 · currentpublished
A Cold Neptune-Mass Planet OGLE-2007-BLG-368Lb: Cold Neptunes Are Common
with T. Sumi, D. P. Bennett, I. A. Bond, A. Udalski +105
1 version
Preprints & journals
229 papers in the corpus · 2007–2025The Dark Energy Survey: Cosmology Results With ~1500 New High-redshift Type Ia Supernovae Using The Full 5-year Dataset2401.02929v4 · T. M. C. Abbott, M. Acevedo, M. Aguena et al.2024 · 36 citationsThe Astrophysical Journal Letters (2024), 973(1), L14
Ground-Based Reconnaissance Observations of 21 Exoplanet Atmospheres with the Exoplanet Transmission Spectroscopy Imager2503.03930v1 · Ryan J. Oelkers, Luke M. Schmidt, Erika Cook et al.2025 · 2 citationsAJ, 169, 134 (2025)
Rapid characterization of exoplanet atmospheres with the Exoplanet Transmission Spectroscopy Imager (ETSI)2503.03931v1 · Luke M. Schmidt, Ryan J. Oelkers, Erika Cook et al.2025 · 2 citationsJournal of Astronomical Telescopes, Instruments, and Systems, Vol. 10, Issue 4, 045005 (December 2024)
Optical and near-infrared photometry of 94 type II supernovae from the Carnegie Supernova Project2410.06738v1 · J.P. Anderson, C. Contreras, M.D. Stritzinger et al.2024 · 17 citationsarXiv
The Hobby-Eberly Telescope Dark Energy Experiment (HETDEX) Survey Design, Reductions, and Detections2110.04298v1 · Karl Gebhardt, Erin Mentuch Cooper, Robin Ciardullo et al.2021 · 120 citationsarXiv
The HETDEX Instrumentation: Hobby-Eberly Telescope Wide Field Upgrade and VIRUS2110.03843v2 · Gary J. Hill, Hanshin Lee, Phillip J. MacQueen et al.2021 · 150 citationsAJ 162 298 (2021)
The Exoplanet Transmission Spectroscopy Imager (ETSI)2012.00795v1 · Mary Anne Limbach, Luke M. Schmidt, D. L. DePoy et al.2020 · 7 citationsarXiv
TOROS Optical follow-up of the Advanced LIGO-VIRGO O2 second observational campaign1901.02960v1 · Rodolfo Artola, Martin Beroiz, Juan Cabral et al.2019 · 5 citationsarXiv
Stellar Kinematics and Metallicities in the Ultra-Faint Dwarf Galaxy Reticulum II1504.02889v2 · J. D. Simon, A. Drlica-Wagner, T. S. Li et al.2015 · 170 citationsAstrophys.J.808:95,2015
Nearest Neighbor: The Low-Mass Milky Way Satellite Tucana III1610.05301v1 · J. D. Simon, T. S. Li, A. Drlica-Wagner et al.2016 · 122 citationsAstrophys.J.838:11,2017
OGLE-2013-BLG-0911Lb: A Secondary on the Brown-Dwarf Planet Boundary around an M-dwarf1912.09613v1 · Shota Miyazaki, Takahiro Sumi, David P. Bennett et al.2019 · 11 citationsarXiv
KELT-24b: A 5M$_{\rm J}$ Planet on a 5.6 day Well-Aligned Orbit around the Young V=8.3 F-star HD 931481906.03276v2 · Joseph E. Rodriguez, Jason D. Eastman, George Zhou et al.2019 · 24 citationsarXiv
The morphology and structure of stellar populations in the Fornax dwarf spheroidal galaxy from Dark Energy Survey Data1809.07801v1 · Mei-Yu Wang, T. de Boer, A. Pieres et al.2018 · 38 citationsarXiv
Dark Energy Survey Year 1 Results: Constraints on Intrinsic Alignments and their Colour Dependence from Galaxy Clustering and Weak Lensing1811.06989v2 · S. Samuroff, J. Blazek, M. A. Troxel et al.2018 · 94 citationsarXiv
Discovery of the Bright Trans-Neptunian Object 2000 EB173astro-ph/0011527v1 · Ignacio Ferrin, D. Rabinowitz, B. Schaefer et al.2000 · 24 citationsAstrophys.J. 548 (2001) L243-L248
OGLE-2003-BLG-262: Finite-Source Effects from a Point-Mass Lensastro-ph/0309302v2 · Jaiyul Yoo, D.L. DePoy, A. Gal-Yam et al.2003 · 428 citationsAstrophys.J.603:139-151,2004
The Dark Energy Camera (DECam)0810.3600v1 · K. Honscheid, D. L. DePoy2008 · 68 citationsarXiv
DECam integration tests on telescope simulator1111.4717v1 · M. Soares-Santos, J. Annis, M. Bonati et al.2011 · 3 citationsPhysics Procedia, 37, 1445, 2012
KELT-23Ab: A Hot Jupiter Transiting a Near-Solar Twin Close to the TESS and JWST Continuous Viewing Zones1903.00031v2 · Daniel Johns, Phillip Reed, Joseph Rodriguez et al.2019 · 12 citationsarXiv
The Maunakea Spectroscopic Explorer1907.07192v1 · Jennifer Marshall, James Bullock, Adam Burgasser et al.2019 · 9 citationsarXiv
On the relative bias of void tracers in the Dark Energy Survey1806.06860v1 · G. Pollina, N. Hamaus, K. Paech et al.2018 · 51 citationsarXiv
First Cosmology Results Using Type Ia Supernovae From the Dark Energy Survey: Analysis, Systematic Uncertainties, and Validation1811.02377v5 · D. Brout, D. Scolnic, R. Kessler et al.2018 · 134 citationsThe Astrophysical Journal, Volume 874, Issue 2, article id. 150, 29 pp. (2019)
First Cosmology Results using Type Ia Supernovae from the Dark Energy Survey: Constraints on Cosmological Parameters1811.02374v4 · T. M. C. Abbott, S. Allam, P. Andersen et al.2018 · 286 citationshttps://ui.adsabs.harvard.edu/abs/2019ApJ...872L..30A
Cosmological Constraints from Multiple Probes in the Dark Energy Survey1811.02375v3 · T. M. C. Abbott, A. Alarcon, S. Allam et al.2018 · 114 citationsPhys. Rev. Lett. 122, 171301 (2019)
Steve: A hierarchical Bayesian model for Supernova Cosmology1811.02381v3 · S. R. Hinton, T. M. Davis, A. G. Kim et al.2018 · 34 citationsarXiv
The Dark Energy Survey Data Release 11801.03181v3 · T. M. C. Abbott, F. B. Abdalla, S. Allam et al.2018 · 719 citationsarXiv
Astro2020 Science White Paper: Are Supernovae the Dust Producer in the Early Universe?1904.08485v1 · Jeonghee Rho, Danny Milisavljevic, Arkaprabha Sarangi (NASA/GSFC) et al.2019 · 0 citationsarXiv
Achieving Transformative Understanding of Extreme Stellar Explosions with ELT-enabled Late-time Spectroscopy1904.05897v1 · D. Milisavljevic, R. Margutti, R. Chornock et al.2019 · 1 citationarXiv
Dark Energy Survey Year 1 Results: Cosmological Constraints from Galaxy Clustering and Weak Lensing1708.01530v3 · T. M. C. Abbott, F. B. Abdalla, A. Alarcon et al.2017 · 1,269 citationsPhys. Rev. D 98, 043526 (2018)
More out of less: an excess integrated Sachs-Wolfe signal from supervoids mapped out by the Dark Energy Survey1811.07812v2 · A. Kov'acs, C. S'anchez, J. Garc'ia-Bellido et al.2018 · 78 citationsarXiv
Dark Energy Survey Year 1 Results: Methodology and Projections for Joint Analysis of Galaxy Clustering, Galaxy Lensing, and CMB Lensing Two-point Functions1802.05257v2 · E. J. Baxter, Y. Omori, C. Chang et al.2018 · 52 citationsPhys. Rev. D 99, 023508 (2019)
Candidate Massive Galaxies at $z \sim 4$ in the Dark Energy Survey1811.12422v1 · Pierandrea Guarnieri, Claudia Maraston, Daniel Thomas et al.2018 · 19 citationsarXiv
Dark Energy Survey Year 1 Results: Measurement of the Baryon Acoustic Oscillation scale in the distribution of galaxies to redshift 11712.06209v2 · T. M. C. Abbott, F. B. Abdalla, A. Alarcon et al.2017 · 195 citationsarXiv
Dark Energy Survey Year 1 Results: Calibration of redMaGiC Redshift Distributions in DES and SDSS from Cross-Correlations1712.07298v2 · R. Cawthon, C. Davis, M. Gatti et al.2017 · 47 citationsarXiv
Dark Energy Survey Year 1 Results: Cosmological Constraints from Cosmic Shear1708.01538v2 · M. A. Troxel, N. MacCrann, J. Zuntz et al.2017 · 662 citationsPhys. Rev. D 98, 043528 (2018)
A Planetary Microlensing Event with an Unusually Red Source Star: MOA-2011-BLG-2911806.06106v1 · David P. Bennett, Andrzej Udalski, Ian A. Bond et al.2018 · 25 citationsarXiv
Systems engineering applied to ELT instrumentation: The GMACS case1806.06390v1 · D. M. Faes, A. Souza, C. Froning et al.2018 · 1 citationarXiv
The STRong lensing Insights into the Dark Energy Survey (STRIDES) 2016 follow-up campaign. II. New quasar lenses from double component fitting1805.12151v1 · T. Anguita, P. L. Schechter, N. Kuropatkin et al.2018 · 32 citationsarXiv
The Data Release of the Sloan Digital Sky Survey-II Supernova Survey1401.3317v1 · Masao Sako, Bruce Bassett, Andrew C. Becker et al.2014 · 220 citationsarXiv
Dark Energy Survey Year 1 Results: Redshift distributions of the weak lensing source galaxies1708.01532v2 · B. Hoyle, D. Gruen, G. M. Bernstein et al.2017 · 211 citationsarXiv
Dark Energy Survey Year 1 Results: Photometric Data Set for Cosmology1708.01531v2 · A. Drlica-Wagner, I. Sevilla-Noarbe, E. S. Rykoff et al.2017 · 288 citationsApJS 235 2 (2018)
The First Planetary Microlensing Event with Two Microlensed Source Stars1707.09667v3 · D.P. Bennett, A. Udalski, C. Han et al.2017 · 25 citationsAJ, 155, 141 (2018)
Dark Energy Survey Year 1 Results: Cross-Correlation Redshifts - Methods and Systematics Characterization1709.00992v1 · M. Gatti, P. Vielzeuf, C. Davis et al.2017 · 81 citationsarXiv
Extreme variability quasars from the Sloan Digital Sky Survey and the Dark Energy Survey1706.07875v1 · Nick Rumbaugh, Yue Shen, Eric Morganson et al.2017 · 126 citationsarXiv
KELT-21b: A Hot Jupiter Transiting the Rapidly-Rotating Metal-Poor Late-A Primary of a Likely Hierarchical Triple System1712.03241v2 · Marshall C. Johnson, Joseph E. Rodriguez, George Zhou et al.2017 · 39 citationsarXiv
Weak lensing magnification in the Dark Energy Survey Science Verification Data1611.10326v2 · M. Garcia-Fernandez, E. S'anchez, I. Sevilla-Noarbe et al.2016 · 34 citationsarXiv
Chemical Abundance Analysis of Three $\alpha$-Poor, Metal-Poor Stars in the Ultra-Faint Dwarf Galaxy Horologium I1708.02290v1 · D. Q. Nagasawa, J. L. Marshall, J. D. Simon et al.2017 · 50 citationsarXiv
COSMOGRAIL XVI: Time delays for the quadruply imaged quasar DES J0408-5354 with high-cadence photometric monitoring1706.09424v2 · F. Courbin, V. Bonvin, E. Buckley-Geer et al.2017 · 120 citationsA&A 609, A71 (2018)
UV-Luminous, Star-Forming Hosts of z~2 Reddened Quasars in the Dark Energy Survey1801.02635v1 · C. F. Wethers, M. Banerji, P. C. Hewett et al.2018 · 14 citationsarXiv
The Carnegie Supernova Project I: Third Photometry Data Release of Low-Redshift Type Ia Supernovae and Other White Dwarf Explosions1709.05146v3 · Kevin Krisciunas, Carlos Contreras, Christopher R. Burns et al.2017 · 235 citationsarXiv
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