Euclid: Searches for strong gravitational lenses using convolutional neural nets in Early Release Observations of the Perseus field
Abstract
The Euclid Wide Survey (EWS) is predicted to find approximately 170 000 galaxy-galaxy strong lenses from its lifetime observation of 14 000 deg^2 of the sky. Detecting this many lenses by visual inspection with professional astronomers and citizen scientists alone is infeasible. Machine learning algorithms, particularly convolutional neural networks (CNNs), have been used as an automated method of detecting strong lenses, and have proven fruitful in finding galaxy-galaxy strong lens candidates. We identify the major challenge to be the automatic detection of galaxy-galaxy strong lenses while simultaneously maintaining a low false positive rate. One aim of this research is to have a quantified starting point on the achieved purity and completeness with our current version of CNN-based detection pipelines for the VIS images of EWS. We select all sources with VIS IE < 23 mag from the Euclid Early Release Observation imaging of the Perseus field. We apply a range of CNN architectures to detect strong lenses in these cutouts. All our networks perform extremely well on simulated data sets and their respective validation sets. However, when applied to real Euclid imaging, the highest lens purity is just 11%. Among all our networks, the false positives are typically identifiable by human volunteers as, for example, spiral galaxies, multiple sources, and artefacts, implying that improvements are still possible, perhaps via a second, more interpretable lens selection filtering stage. There is currently no alternative to human classification of CNN-selected lens candidates. Given the expected 10^5 lensing systems in Euclid, this implies 10^6 objects for human classification, which while very large is not in principle intractable and not without precedent.
Keywords
Cite
@article{arxiv.2411.16808,
title = {Euclid: Searches for strong gravitational lenses using convolutional neural nets in Early Release Observations of the Perseus field},
author = {R. Pearce-Casey and B. C. Nagam and J. Wilde and V. Busillo and L. Ulivi and I. T. Andika and A. Manjón-García and L. Leuzzi and P. Matavulj and S. Serjeant and M. Walmsley and J. A. Acevedo Barroso and C. M. O'Riordan and B. Clément and C. Tortora and T. E. Collett and F. Courbin and R. Gavazzi and R. B. Metcalf and R. Cabanac and H. M. Courtois and J. Crook-Mansour and L. Delchambre and G. Despali and L. R. Ecker and A. Franco and P. Holloway and K. Jahnke and G. Mahler and L. Marchetti and A. Melo and M. Meneghetti and O. Müller and A. A. Nucita and J. Pearson and K. Rojas and C. Scarlata and S. Schuldt and D. Sluse and S. H. Suyu and M. Vaccari and S. Vegetti and A. Verma and G. Vernardos and M. Bolzonella and M. Kluge and T. Saifollahi and M. Schirmer and C. Stone and A. Paulino-Afonso and L. Bazzanini and N. B. Hogg and L. V. E. Koopmans and S. Kruk and F. Mannucci and J. M. Bromley and A. Díaz-Sánchez and H. J. Dickinson and D. M. Powell and H. Bouy and R. Laureijs and B. Altieri and A. Amara and S. Andreon and C. Baccigalupi and M. Baldi and A. Balestra and S. Bardelli and P. Battaglia and D. Bonino and E. Branchini and M. Brescia and J. Brinchmann and A. Caillat and S. Camera and V. Capobianco and C. Carbone and J. Carretero and S. Casas and M. Castellano and G. Castignani and S. Cavuoti and A. Cimatti and C. Colodro-Conde and G. Congedo and C. J. Conselice and L. Conversi and Y. Copin and M. Cropper and A. Da Silva and H. Degaudenzi and G. De Lucia and A. M. Di Giorgio and J. Dinis and F. Dubath and X. Dupac and S. Dusini and M. Farina and S. Farrens and F. Faustini and S. Ferriol and M. Frailis and E. Franceschi and S. Galeotta and K. George and W. Gillard and B. Gillis and C. Giocoli and P. Gómez-Alvarez and A. Grazian and F. Grupp and S. V. H. Haugan and W. Holmes and I. Hook and F. Hormuth and A. Hornstrup and P. Hudelot and M. Jhabvala and B. Joachimi and E. Keihänen and S. Kermiche and A. Kiessling and M. Kilbinger and B. Kubik and M. Kümmel and M. Kunz and H. Kurki-Suonio and D. Le Mignant and S. Ligori and P. B. Lilje and V. Lindholm and I. Lloro and E. Maiorano and O. Mansutti and O. Marggraf and K. Markovic and M. Martinelli and N. Martinet and F. Marulli and R. Massey and E. Medinaceli and S. Mei and M. Melchior and Y. Mellier and E. Merlin and G. Meylan and M. Moresco and L. Moscardini and R. Nakajima and C. Neissner and R. C. Nichol and S. -M. Niemi and J. W. Nightingale and C. Padilla and S. Paltani and F. Pasian and K. Pedersen and W. J. Percival and V. Pettorino and S. Pires and G. Polenta and M. Poncet and L. A. Popa and L. Pozzetti and F. Raison and A. Renzi and J. Rhodes and G. Riccio and E. Romelli and M. Roncarelli and E. Rossetti and R. Saglia and Z. Sakr and A. G. Sánchez and D. Sapone and B. Sartoris and P. Schneider and T. Schrabback and A. Secroun and G. Seidel and S. Serrano and C. Sirignano and G. Sirri and J. Skottfelt and L. Stanco and J. Steinwagner and P. Tallada-Crespí and I. Tereno and R. Toledo-Moreo and F. Torradeflot and I. Tutusaus and E. A. Valentijn and L. Valenziano and T. Vassallo and G. Verdoes Kleijn and A. Veropalumbo and Y. Wang and J. Weller and G. Zamorani and E. Zucca and C. Burigana and M. Calabrese and A. Mora and M. Pöntinen and V. Scottez and M. Viel and B. Margalef-Bentabol},
journal= {arXiv preprint arXiv:2411.16808},
year = {2024}
}
Comments
22 pages, 11 figures, Euclid consortium paper, A&A submitted