Model-independent searches of new physics in DARWIN with a semi-supervised deep learning pipeline
Abstract
We present a novel deep learning pipeline to perform a model-independent, likelihood-free search for anomalous (i.e., non-background) events in the proposed next generation multi-ton scale liquid Xenon-based direct detection experiment, DARWIN. We train an anomaly detector comprising a variational autoencoder and a classifier on extensive, high-dimensional simulated detector response data and construct a one-dimensional anomaly score optimised to reject the background only hypothesis in the presence of an excess of non-background-like events. We benchmark the procedure with a sensitivity study that determines its power to reject the background-only hypothesis in the presence of an injected WIMP dark matter signal, outperforming the classical, likelihood-based background rejection test. We show that our neural networks learn relevant energy features of the events from low-level, high-dimensional detector outputs, without the need to compress this data into lower-dimensional observables, thus reducing computational effort and information loss. For the future, our approach lays the foundation for an efficient end-to-end pipeline that eliminates the need for many of the corrections and cuts that are traditionally part of the analysis chain, with the potential of achieving higher accuracy and significant reduction of analysis time.
Cite
@article{arxiv.2410.00755,
title = {Model-independent searches of new physics in DARWIN with a semi-supervised deep learning pipeline},
author = {J. Aalbers and K. Abe and M. Adrover and S. Ahmed Maouloud and L. Althueser and D. W. P. Amaral and B. Andrieu and E. Angelino and D. Antón Martin and B. Antunovic and E. Aprile and M. Babicz and D. Bajpai and M. Balzer and E. Barberio and L. Baudis and M. Bazyk and N. F. Bell and L. Bellagamba and R. Biondi and Y. Biondi and A. Bismark and C. Boehm and K. Boese and R. Braun and A. Breskin and S. Brommer and A. Brown and G. Bruni and R. Budnik and C. Cai and C. Capelli and A. Chauvin and A. P. Cimental Chavez and A. P. Colijn and J. Conrad and J. J. Cuenca-García and V. D'Andrea and L. C. Daniel Garcia and M. P. Decowski and A. Deisting and C. Di Donato and P. Di Gangi and S. Diglio and M. Doerenkamp and G. Drexlin and K. Eitel and A. Elykov and R. Engel and A. D. Ferella and C. Ferrari and H. Fischer and T. Flehmke and M. Flierman and K. Fujikawa and W. Fulgione and C. Fuselli and P. Gaemers and R. Gaior and M. Galloway and F. Gao and N. Garroum and R. Giacomobono and F. Girard and R. Glade-Beucke and F. Glück and L. Grandi and J. Grigat and R. Größle and H. Guan and M. Guida and P. Gyorgy and R. Hammann and V. Hannen and S. Hansmann-Menzemer and N. Hargittai and A. Higuera and C. Hils and K. Hiraoka and L. Hoetzsch and M. Hoferichter and N. F. Hood and M. Iacovacci and Y. Itow and J. Jakob and R. S. James and F. Joerg and F. Kahlert and Y. Kaminaga and M. Kara and P. Kavrigin and S. Kazama and M. Keller and P. Kharbanda and B. Kilminster and M. Kleifges and M. Klute and M. Kobayashi and D. Koke and A. Kopec and B. von Krosigk and F. Kuger and L. LaCascio and H. Landsman and R. F. Lang and L. Levinson and I. Li and A. Li and S. Li and S. Liang and Z. Liang and Y. -T. Lin and S. Lindemann and M. Lindner and K. Liu and J. Loizeau and F. Lombardi and J. Long and J. A. M. Lopes and G. M. Lucchetti and T. Luce and Y. Ma and C. Macolino and J. Mahlstedt and B. Maier and A. Mancuso and L. Manenti and F. Marignetti and T. Marrodán Undagoitia and K. Martens and J. Masbou and E. Masson and S. Mastroianni and A. Melchiorre and J. Menéndez and M. Messina and B. Milosovic and S. Milutinovic and K. Miuchi and R. Miyata and A. Molinario and C. M. B. Monteiro and K. Morå and S. Moriyama and E. Morteau and Y. Mosbacher and J. Müller and M. Murra and J. L. Newstead and K. Ni and C. O'Hare and U. Oberlack and M. Obradovic and I. Ostrowskiy and S. Ouahada and B. Paetsch and Y. Pan and M. Pandurovic and Q. Pellegrini and R. Peres and F. Piastra and J. Pienaar and M. Pierre and G. Plante and T. R. Pollmann and L. Principe and J. Qi and K. Qiao and J. Qin and M. Rajado and D. Ramírez García and A. Ravindran and A. Razeto and L. Sanchez and P. Sanchez-Lucas and G. Sartorelli and A. Scaffidi and J. Schreiner and P. Schulte and H. Schulze Eißing and M. Schumann and A. Schwenck and A. Schwenk and L. Scotto Lavina and M. Selvi and F. Semeria and P. Shagin and S. Sharma and W. Shen and S. Y. Shi and T. Shimada and H. Simgen and R. Singh and M. Solmaz and O. Stanley and M. Steidl and A. Stevens and A. Takeda and P. -L. Tan and D. Thers and T. Thümmler and F. Tönnies and F. Toschi and G. Trinchero and R. Trotta and C. D. Tunnell and P. Urquijo and M. Utoyama and K. Valerius and S. Vecchi and S. Vetter and G. Volta and D. Vorkapic and W. Wang and K. M. Weerman and C. Weinheimer and M. Weiss and D. Wenz and M. Wilson and C. Wittweg and J. Wolf and V. H. S. Wu and S. Wüstling and M. Wurm and Y. Xing and D. Xu and Z. Xu and M. Yamashita and L. Yang and J. Ye and L. Yuan and G. Zavattini and M. Zhong and K. Zuber},
journal= {arXiv preprint arXiv:2410.00755},
year = {2026}
}
Comments
10 Figures, 3 Tables, 23 Pages (incl. references. V2 Matching published version in EPJC