RS
R. Street
astro-ph.EPastro-ph.SRastro-ph.IMastro-ph.GAastro-ph.HEastro-phastro-ph.COgr-qcphysics.soc-ph
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
156 papers in the corpus · 2008–2025Predictions of the Nancy Grace Roman Space Telescope Galactic Exoplanet Survey. V. Detection Rates of Multiplanetary Systems in High Magnification Microlensing Events2512.05182v1 · Vito Saggese, 'Etienne Bachelet, Sebastiano Calchi Novati et al.2025 · 0 citationsarXiv
Predictions of the Nancy Grace Roman Space Telescope Galactic Exoplanet Survey. IV. Lens Mass and Distance Measurements2510.13974v2 · Sean K. Terry, Etienne Bachelet, Farzaneh Zohrabi et al.2025 · 8 citationsarXiv
The BlackGEM telescope array I: Overview2405.18923v4 · Paul J. Groot (Radboud, UCT, SAAO) et al.2024 · 33 citationsPASP 136 115003 (2024)
Microlensing Discovery and Characterization Efficiency in the Vera C. Rubin Legacy Survey of Space and Time2309.15310v2 · Natasha S. Abrams, Markus P.G. Hundertmark, Somayeh Khakpash et al.2023 · 14 citationsarXiv
Synergies between Roman Galactic Plane Survey and other major surveys2406.14767v1 · Katarzyna Kruszy'nska, Rachel A. Street, Steven Gough-Kelly et al.2024 · 0 citationsarXiv
Gaia21blx: Complete resolution of a binary microlensing event in the Galactic disk2404.05078v1 · P. Rota, V. Bozza, M. Hundertmark et al.2024 · 2 citationsA&A 686, A173 (2024)
Four microlensing giant planets detected through signals produced by minor-image perturbations2406.10547v1 · Cheongho Han, Ian A. Bond, Chung-Uk Lee et al.2024 · 6 citationsarXiv
Gaia22dkvLb: A Microlensing Planet Potentially Accessible to Radial-Velocity Characterization2309.03944v2 · Zexuan Wu, Subo Dong, Tuan Yi et al.2023 · 7 citationsarXiv
Windows on the Universe: Establishing the Infrastructure for a Collaborative Multi-messenger Ecosystem2401.02063v2 · The 2023 Windows on the Universe Workshop White Paper Working Group: T. Ahumada, J. E. Andrews, S. Antier et al.2024 · 0 citationsarXiv
ROME/REA: Three-year, Tri-color Timeseries Photometry of the Galactic Bulge2403.05987v1 · R.A. Street, E. Bachelet, Y. Tsapras et al.2024 · 3 citationsarXiv
Anti-Black racism workshop during the Vera C. Rubin Observatory virtual 2021 Project and Community Workshop2310.12177v1 · Andr'es A. Plazas Malag'on, Federica Bianco, Ranpal Gill et al.2023 · 0 citationsarXiv
Velocity-Resolved Reverberation Mapping of NGC 32272310.03904v1 · Misty C. Bentz, Madison Markham, Sara Rosborough et al.2023 · 15 citationsarXiv
Rubin Observatory LSST Stars Milky Way and Local Volume Star Clusters Roadmap2306.17333v1 · Christopher Usher, Kristen C. Dage, L'eo Girardi et al.2023 · 14 citationsarXiv
LSST Survey Strategy in the Galactic Plane and Magellanic Clouds2305.11988v1 · R.A. Street, X. Li, S. Khakpash et al.2023 · 11 citationsarXiv
Roman CCS White Paper: Characterizing the Galactic population of isolated black holes2306.12514v2 · Casey Y. Lam, Natasha Abrams, Jeff Andrews et al.2023 · 0 citationsarXiv
Maximizing science return by coordinating the survey strategies of Roman with Rubin, and other major facilities2306.13792v1 · R.A. Street, S. Gough-Kelly, C. Lam et al.2023 · 1 citationarXiv
The Galactic Center with Roman2306.12485v1 · Sean K. Terry, Matthew W. Hosek Jr., Jessica R. Lu et al.2023 · 1 citationarXiv
MOA-2020-BLG-208Lb: Cool Sub-Saturn Planet Within Predicted Desert2210.02436v2 · Greg Olmschenk, David P. Bennett, Ian A. Bond et al.2022 · 3 citationsThe Astronomical Journal, 2023, Volume 165, Page 175
Rubin LSST observing strategies to maximize volume and uniformity coverage of Star Forming Regions in the Galactic Plane2302.08604v1 · L. Prisinzano, R. Bonito, A. Mazzi et al.2023 · 4 citationsarXiv
Young stellar objects, accretion disks, and their variability with Rubin Observatory LSST2302.00897v1 · R. Bonito, L. Venuti, S. Ustamujic et al.2023 · 13 citationsarXiv
Reverberation Mapping of IC4329A2212.05954v1 · Misty C. Bentz, Christopher A. Onken, Rachel Street et al.2022 · 29 citationsarXiv
Deep Drilling in the Time Domain with DECam: Survey Characterization2211.09202v1 · Melissa L. Graham, Robert A. Knop, Thomas Kennedy et al.2022 · 13 citationsarXiv
MOA-2019-BLG-008Lb: a new microlensing detection of an object at the planet/brown dwarf boundary2205.07522v1 · E. Bachelet, Y. Tsapras, Andrew Gould et al.2022 · 5 citationsarXiv
Rubin Observatory LSST Transients and Variable Stars Roadmap2208.04499v1 · Kelly M. Hambleton, Federica B. Bianco, Rachel Street et al.2022 · 55 citationsarXiv
From Data to Software to Science with the Rubin Observatory LSST2208.02781v1 · Katelyn Breivik, Andrew J. Connolly, K. E. Saavik Ford et al.2022 · 3 citationsarXiv
An Isolated Stellar-Mass Black Hole Detected Through Astrometric Microlensing2201.13296v4 · Kailash C. Sahu, Jay Anderson, Stefano Casertano et al.2022 · 169 citationsApJ, 933, 83 (2022)
OGLE-2018-BLG-0799Lb: a $q \sim 2.7 \times 10^{-3}$ Planet with Spitzer Parallax2010.08732v2 · Weicheng Zang, Yossi Shvartzvald, Andrzej Udalski et al.2020 · 7 citationsarXiv
Lens parameters for Gaia18cbf -- a long gravitational microlensing event in the Galactic plane2111.08337v3 · Katarzyna Kruszy'nska, \L. Wyrzykowski, K. A. Rybicki et al.2021 · 15 citationsA&A 662, A59 (2022)
R2-D2: Roman and Rubin -- From Data to Discovery2202.12311v1 · Suvi Gezari (STScI/JHU), Misty Bentz (Georgia State), Kishalay De et al.2022 · 3 citationsarXiv
Optimization of the Observing Cadence for the Rubin Observatory Legacy Survey of Space and Time: a pioneering process of community-focused experimental design2108.01683v2 · Federica B. Bianco, Zeljko Ivezi'c, R. Lynne Jones et al.2021 · 149 citationsarXiv
A spectroscopic follow-up for Gaia19bld2112.01676v1 · E. Bachelet, P. Zielinski, M. Gromadzki et al.2021 · 10 citationsarXiv
A Detailed View of the Broad Line Region in NGC 3783 from Velocity-Resolved Reverberation Mapping2108.00482v1 · Misty C. Bentz, Peter R. Williams, Rachel Street et al.2021 · 41 citationsarXiv
A geometric distance to the supermassive black Hole of NGC 37832107.14262v1 · A. Amorim, M. Baubock, M. C. Bentz et al.2021 · 37 citationsA&A 654, A85 (2021)
OGLE-2019-BLG-0960Lb: The Smallest Microlensing Planet2101.04696v1 · Jennifer C. Yee, Weicheng Zang, Andrzej Udalski et al.2021 · 53 citationsarXiv
PyTorchDIA: A flexible, GPU-accelerated numerical approach to Difference Image Analysis2104.13715v2 · James A. Hitchcock, Markus Hundertmark, Daniel Foreman-Mackey et al.2021 · 5 citationsarXiv
Classifying High-cadence Microlensing Light Curves I; Defining Features2101.04019v1 · Somayeh Khakpash, Joshua Pepper, Matthew Penny et al.2021 · 7 citationsarXiv
Young Stars and their Variability with LSST1812.03135v1 · Rosaria Bonito, Patrick Hartigan, Laura Venuti et al.2018 · 1 citationarXiv
Enabling and Enhancing Astrophysical Observations with Autonomous Systems2009.07361v1 · Rashied Amini, Steve Chien, Lorraine Fesq et al.2020 · 0 citationsarXiv
Gaia 18dvy: a new FUor in the Cygnus OB3 association2005.11537v2 · E. Szegedi-Elek, P. 'Abrah'am, L. Wyrzykowski et al.2020 · 56 citationsarXiv
Spitzer Microlensing parallax reveals two isolated stars in the Galactic bulge1904.11204v1 · Weicheng Zang, Yossi Shvartzvald, Tianshu Wang et al.2019 · 17 citationsarXiv
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
Kojima-1Lb Is a Mildly Cold Neptune around the Brightest Microlensing Host Star1909.11802v2 · A. Fukui, D. Suzuki, N. Koshimoto et al.2019 · 32 citationsarXiv
Spitzer Microlensing Program as a Probe for Globular Cluster Planets. Analysis of OGLE-2015-BLG-04481512.08520v2 · Rados\law Poleski, Wei Zhu, Grant W. Christie et al.2015 · 23 citationsarXiv
Infrastructure and Strategies for Time Domain and MMA and Follow-Up1908.11417v1 · B. W. Miller, L. Allen, E. Bellm et al.2019 · 0 citationsarXiv
Community Involvement in the WFIRST Exoplanet Microlensing Survey1908.00548v1 · David P. Bennett, Rachel Akeson, Thomas Barclay et al.2019 · 0 citationsarXiv
OGLE-2017-BLG-1186: first application of asteroseismology and Gaussian processes to microlensing1904.07718v2 · Shun-Sheng Li, Weicheng Zang, Andrzej Udalski et al.2019 · 18 citationsarXiv
Better support for collaborations preparing for large-scale projects: the case study of the LSST Science Collaborations Astro2020 APC White Paper1907.09027v1 · Federica B. Bianco, Manda Banerji, John Bochanski et al.2019 · 0 citationsarXiv
An analysis of binary microlensing event OGLE-2015-BLG-00601906.02630v1 · Y. Tsapras, A. Cassan, C. Ranc et al.2019 · 6 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
Career total: 310 works. 156 are in this corpus.Showing the 50 most recent.
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