The AGEL Survey: Spectroscopic Confirmation of Strong Gravitational Lenses in the DES and DECaLS Fields Selected Using Convolutional Neural Networks
arXiv:2205.05307 · doi:10.3847/1538-3881/ac7da2
Abstract
We present spectroscopic confirmation of candidate strong gravitational lenses using the Keck Observatory and Very Large Telescope as part of our ASTRO 3D Galaxy Evolution with Lenses (AGEL) survey. We confirm that 1) search methods using Convolutional Neural Networks (CNN) with visual inspection successfully identify strong gravitational lenses and 2) the lenses are at higher redshifts relative to existing surveys due to the combination of deeper and higher resolution imaging from DECam and spectroscopy spanning optical to near-infrared wavelengths. We measure 104 redshifts in 77 systems selected from a catalog in the DES and DECaLS imaging fields (r<22 mag). Combining our results with published redshifts, we present redshifts for 68 lenses and establish that CNN-based searches are highly effective for use in future imaging surveys with a success rate of 88% (defined as 68/77). We report 53 strong lenses with spectroscopic redshifts for both the deflector and source (z_src>z_defl), and 15 lenses with a spectroscopic redshift for either the deflector (z_defl>0.21) or source (z_src>1.34). For the 68 lenses, the deflectors and sources have average redshifts and standard deviations of 0.58+/-0.14 and 1.92+/-0.59 respectively, and corresponding redshift ranges of (0.21<z_defl<0.89) and (0.88<z_src<3.55). The AGEL systems include 41 deflectors at zdefl>0.5 that are ideal for follow-up studies to track how mass density profiles evolve with redshift. Our goal with AGEL is to spectroscopically confirm ~100 strong gravitational lenses that can be observed from both hemispheres throughout the year. The AGEL survey is a resource for refining automated all-sky searches and addressing a range of questions in astrophysics and cosmology.
Updated final version of manuscript published by the Astronomical Journal
References in corpus (17)
- Cosmic Star Formation History
- Understanding Galaxy Evolution through Emission Lines
- The Sloan Lens ACS Survey. V. The Full ACS Strong-Lens Sample
- Multiple Images of a Highly Magnified Supernova Formed by an Early-Type Cluster Galaxy Lens
- The MOSDEF Survey: Mass, Metallicity, and Star-formation Rate at z~2.3
- The Cosmic Horseshoe: Discovery of an Einstein Ring around a Giant Luminous Red Galaxy
- Discovering New Strong Gravitational Lenses in the DESI Legacy Imaging Surveys
- A clumpy and anisotropic galaxy halo at z=1 from gravitational-arc tomography
- Gemini/GMOS Spectroscopy of 26 Strong Lensing Selected Galaxy Cluster Cores
- Two New Large Separation Gravitational Lenses from SDSS
- Survey of Gravitationally-lensed Objects in HSC Imaging (SuGOHI). VI. Crowdsourced lens finding with Space Warps
- CHITAH: Strong-gravitational-lens hunter in imaging surveys
- The Completed SDSS-IV extended Baryon Oscillation Spectroscopic Survey: A Catalogue of Strong Galaxy-Galaxy Lens Candidates
- The most ancient spiral galaxy: a 2.6-Gyr-old disk with a tranquil velocity field
- Kinematics of the Circumgalactic Medium of a Galaxy from MgII Tomography
- Discovery of a Strong Lensing Galaxy Embedded in a Cluster at z = 1.62
- HII Region Metallicity Constraints Near the Site of the Strongly Lensed Supernova "SN Refsdal" at Redshift 1.49