Spectroscopic Alerts for the Time-Domain Era
Abstract
Time-domain astronomy is entering an era of unprecedented discovery driven by wide-field, high-cadence surveys such as LSST, Roman, Euclid, SKA, and PLATO. While some of these facilities will generate enormous photometric alert streams, the physical interpretation of variability and transients often requires spectroscopy, which encodes changes in ionisation state, kinematics, and accretion that are inaccessible to photometry alone. A critical gap is therefore emerging: next-generation surveys may produce up to alerts per year, whereas global spectroscopic follow-up is limited to only -- transient spectra annually. We present the concept of spectroscopic alerts: real-time notifications triggered by significant spectral evolution, enabling spectroscopy to act as a discovery channel rather than solely as follow-up. We outline the key science cases enabled by this capability and describe the instrumental and operational requirements of a wide-field, highly multiplexed spectroscopic facility capable of delivering real-time spectral discovery for 2040s time-domain and multi-messenger astronomy.
Keywords
Cite
@article{arxiv.2512.15555,
title = {Spectroscopic Alerts for the Time-Domain Era},
author = {Alejandra Melo and Paula Sanchez-Saez and Valentin D. Ivanov and Richard I. Anderson and Amelia Bayo and Avraham Binnenfeld and Sofia Bisero and Dragana Ilić and Andjelka B. Kovačević and Fatemeh Zahra Majidi and Jaroslav Merc and Anna Pala and Swayamtrupta Panda and Sarath Satheesh-Sheeba and Fabian Schüssler and Susanna D. Vergani},
journal= {arXiv preprint arXiv:2512.15555},
year = {2025}
}
Comments
A similar version of this white paper was submitted to the ESO Expanding Horizons call for white papers