DELIGHT: Deep Learning Identification of Galaxy Hosts of Transients using Multi-resolution Images
Abstract
We present DELIGHT, or Deep Learning Identification of Galaxy Hosts of Transients, a new algorithm designed to automatically and in real-time identify the host galaxies of extragalactic transients. The proposed algorithm receives as input compact, multi-resolution images centered at the position of a transient candidate and outputs two-dimensional offset vectors that connect the transient with the center of its predicted host. The multi-resolution input consists of a set of images with the same number of pixels, but with progressively larger pixel sizes and fields of view. A sample of \nSample galaxies visually identified by the ALeRCE broker team was used to train a convolutional neural network regression model. We show that this method is able to correctly identify both relatively large () and small () apparent size host galaxies using much less information (32 kB) than with a large, single-resolution image (920 kB). The proposed method has fewer catastrophic errors in recovering the position and is more complete and has less contamination () recovering the cross-matched redshift than other state-of-the-art methods. The more efficient representation provided by multi-resolution input images could allow for the identification of transient host galaxies in real-time, if adopted in alert streams from new generation of large etendue telescopes such as the Vera C. Rubin Observatory.
Keywords
Cite
@article{arxiv.2208.04310,
title = {DELIGHT: Deep Learning Identification of Galaxy Hosts of Transients using Multi-resolution Images},
author = {Francisco Förster and Alejandra M. Muñoz Arancibia and Ignacio Reyes and Alexander Gagliano and Dylan Britt and Sara Cuellar-Carrillo and Felipe Figueroa-Tapia and Ava Polzin and Yara Yousef and Javier Arredondo and Diego Rodríguez-Mancini and Javier Correa-Orellana and Amelia Bayo and Franz E. Bauer and Márcio Catelan and Guillermo Cabrera-Vives and Raya Dastidar and Pablo A. Estévez and Giuliano Pignata and Lorena Hernandez-Garcia and Pablo Huijse and Esteban Reyes and Paula Sánchez-Sáez and Mauricio Ramirez and Daniela Grandón and Jonathan Pineda-García and Francisca Chabour-Barra and Javier Silva-Farfán},
journal= {arXiv preprint arXiv:2208.04310},
year = {2022}
}
Comments
Submitted to The Astronomical Journal on Aug 5th, 2022. Comments and suggestions are welcome