TY - JOUR
T1 - Euclid Quick Data Release (Q1)
T2 - XXVI. The Strong Lensing Discovery Engine A – System overview and first lens sample
AU - Euclid Collaboration
AU - Collaboration, Euclid
AU - Walmsley, M.
AU - Holloway, P.
AU - Lines, N. E. P.
AU - Rojas, K.
AU - Collett, T. E.
AU - Verma, A.
AU - Li, T.
AU - Nightingale, J. W.
AU - Despali, G.
AU - Schuldt, S.
AU - Gavazzi, R.
AU - Melo, A.
AU - Metcalf, R. B.
AU - Andika, I. T.
AU - Leuzzi, L.
AU - Manjón-García, A.
AU - Pearce-Casey, R.
AU - Vincken, S. H.
AU - Wilde, J.
AU - Busillo, V.
AU - Tortora, C.
AU - Barroso, J. A. Acevedo
AU - Dole, H.
AU - Ecker, L. R.
AU - Pearson, J.
AU - Marshall, P. J.
AU - More, A.
AU - Saifollahi, T.
AU - Gracia-Carpio, J.
AU - Baeten, E.
AU - Cornen, C.
AU - Macmillan, C.
AU - Kruk, S.
AU - Remmelgas, K. A.
AU - Clément, B.
AU - Degaudenzi, H.
AU - Courbin, F.
AU - Bovy, J.
AU - Casas, S.
AU - Dannerbauer, H.
AU - Hogg, N. B.
AU - Weisenbach, L.
AU - Amara, A.
AU - Nichol, R. C.
AU - Percival, W. J.
AU - Schewtschenko, J. A.
AU - Gaztanaga, E.
AU - Nadathur, S.
AU - Naidoo, K.
N1 - Data: https://doi.org/10.5281/zenodo.15003116. Paper submitted as part of the A&A Special Issue `Euclid Quick Data Release (Q1)'. 20 pages, 11 figures, plus appendices
PY - 2026/7/1
Y1 - 2026/7/1
N2 - We present a catalogue of 497 galaxy-galaxy strong lenses in the Euclid Quick Release 1 data (63 deg$^2$). In the initial 0.45\% of Euclid's surveys, we double the total number of known lens candidates with space-based imaging. Our catalogue includes 250 grade A candidates, the vast majority of which (243) were previously unpublished. Euclid's resolution reveals rare lens configurations of scientific value including double-source-plane lenses, edge-on lenses, complete Einstein rings, and quadruply-imaged lenses. We resolve lenses with small Einstein radii ($\theta_{\rm E} < 1''$) in large numbers for the first time. These lenses are found through an initial sweep by deep learning models, followed by Space Warps citizen scientist inspection, expert vetting, and system-by-system modelling. Our search approach scales straightforwardly to Euclid Data Release 1 and, without changes, would yield approximately 7000 high-confidence (grade A or B) lens candidates by late 2026. Further extrapolating to the complete Euclid Wide Survey implies a likely yield of over 100000 high-confidence candidates, transforming strong lensing science.
AB - We present a catalogue of 497 galaxy-galaxy strong lenses in the Euclid Quick Release 1 data (63 deg$^2$). In the initial 0.45\% of Euclid's surveys, we double the total number of known lens candidates with space-based imaging. Our catalogue includes 250 grade A candidates, the vast majority of which (243) were previously unpublished. Euclid's resolution reveals rare lens configurations of scientific value including double-source-plane lenses, edge-on lenses, complete Einstein rings, and quadruply-imaged lenses. We resolve lenses with small Einstein radii ($\theta_{\rm E} < 1''$) in large numbers for the first time. These lenses are found through an initial sweep by deep learning models, followed by Space Warps citizen scientist inspection, expert vetting, and system-by-system modelling. Our search approach scales straightforwardly to Euclid Data Release 1 and, without changes, would yield approximately 7000 high-confidence (grade A or B) lens candidates by late 2026. Further extrapolating to the complete Euclid Wide Survey implies a likely yield of over 100000 high-confidence candidates, transforming strong lensing science.
KW - astro-ph.GA
KW - gravitational lensing: strong
KW - methods: statistical
KW - catalogs
U2 - 10.1051/0004-6361/202555141
DO - 10.1051/0004-6361/202555141
M3 - Article
SN - 0004-6361
VL - 711
JO - Astronomy and Astrophysics
JF - Astronomy and Astrophysics
M1 - A26
ER -