The Science Alert Generation system of the Cherenkov Telescope Array Observatory
A. Bulgarelli, S. Caroff, A. Addis, P. Aubert, L. Baroncelli, G. De, Cesare, A. DiPiano, V. Fioretti, E. Garcia, G. Maurin, N. Parmiggiani, T., Vuillaume, I. Oya, C. Hoischen (for the CTA Observatory)

TL;DR
The paper describes the design and architecture of the Science Alert Generation system for the Cherenkov Telescope Array, enabling rapid, automated detection and alerting of gamma-ray transients within 20 seconds to maximize scientific output.
Contribution
It introduces the architecture of the ACADA-SAG system, a real-time alert generation pipeline optimized for high trigger rates and rapid analysis in gamma-ray astronomy.
Findings
SAG issues alerts within 20 seconds of data acquisition.
The system achieves at least half of CTA's nominal sensitivity.
Designed to handle trigger rates of tens of kHz.
Abstract
The Cherenkov Telescope Array (CTA) Observatory, with dozens of telescopes located in both the Northern and Southern Hemispheres, will be the largest ground-based gamma-ray observatory and will provide broad energy coverage from 20 GeV to 300 TeV. The large effective area and field-of-view, coupled with the fast slewing capability and unprecedented sensitivity, make CTA a crucial instrument for the future of ground-based gamma-ray astronomy. To maximise the scientific return, the array will send alerts on transients and variable phenomena (e.g. gamma-ray burst, active galactic nuclei, gamma-ray binaries, serendipitous sources). Rapid and effective communication to the community requires a reliable and automated system to detect and issue candidate science alerts. This automation will be accomplished by the Science Alert Generation (SAG) pipeline, a key system of the CTA Observatory. SAG…
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