SDSS-IV MaNGA: The Spectroscopic Discovery of Strongly Lensed Galaxies
Michael S. Talbot, Joel R. Brownstein, Adam S. Bolton, Kevin Bundy,, Brett H. Andrews, Brian Cherinka, Thomas E. Collett, Anupreeta More, Surhud, More, Alessandro Sonnenfeld, Simona Vegetti, David A. Wake, Anne-Marie, Weijmans, Kyle B. Westfall

TL;DR
This paper reports the discovery of 38 strong gravitational lens candidates using SDSS-IV MaNGA data, extending previous surveys by identifying larger Einstein radii and multiple background sources through spectroscopic analysis.
Contribution
It introduces a new methodology for detecting strong lensing in IFU spectra, discovering multiple background sources and larger Einstein radii than prior surveys.
Findings
38 lens candidates identified
Evidence of multiple background sources in some systems
Larger Einstein radii than previous surveys
Abstract
We present a catalogue of 38 spectroscopically detected strong galaxy-galaxy gravitational lens candidates identified in the Sloan Digital Sky Survey IV (SDSS-IV). We were able to simulate narrow-band images for 8 of them demonstrating evidence of multiple images. Two of our systems are compound lens candidates, each with 2 background source-planes. One of these compound systems shows clear lensing features in the narrow-band image. Our sample is based on 2812 galaxies observed by the Mapping Nearby Galaxies at APO (MaNGA) integral field unit (IFU). This Spectroscopic Identification of Lensing Objects (SILO) survey extends the methodology of the Sloan Lens ACS Survey (SLACS) and BOSS Emission-Line Survey (BELLS) to lower redshift and multiple IFU spectra. We searched ~ 1.5 million spectra, of which 3065 contained multiple high signal-to-noise background emission-lines or a resolved…
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