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Olivieri M, Orsini M, Park JG, Pascucci D, Perreca A, Piergiovanni F, Pierro V, Pinard L, Pinto I, Punturo M, Puppo P, Quochi F, Rading RO, Rapagnani P, Ricci M, Rodrigues D, Romano R, Rozza D, Saffarieh P, Santucci F, Schramm S, Schwab B, Sequino V, Neto LS, Silenzi L, Sintes AM, Sopuerta CF, Spencer A, Stahl A, Steinlechner J, Steinlechner S, Szabó R, Thümmler T, Tofani E, Torniamenti S, Travaglini R, Trozzo L, Paola Vaccaro M, Valentini M, Ván P, van Dongen J, van Heijningen J, van Ranst Z, Vardaro M, Verdier P, Vernieri D, Wagner N, Woehler J, Wolf J, Zavattini G, Zink A, Zmija A (2026)
Publication Type: Journal article
Publication year: 2026
Book Volume: 2026
Article Number: 081
Journal Issue: 3
DOI: 10.1088/1475-7516/2026/03/081
Einstein Telescope (ET) is the European project for a gravitational-wave (GW) observatory of third-generation. In this paper we present a comprehensive discussion of its science objectives, providing state-of-the-art predictions for the capabilities of ET in both geometries currently under consideration, a single-site triangular configuration or two L-shaped detectors. We discuss the impact that ET will have on domains as broad and diverse as fundamental physics, cosmology, early Universe, astrophysics of compact objects, physics of matter in extreme conditions, and dynamics of stellar collapse. We discuss how the study of extreme astrophysical events will be enhanced by multi-messenger observations. We highlight the ET synergies with ground-based and space-borne GW observatories, including multi-band investigations of the same sources, improved parameter estimation, and complementary information on astrophysical or cosmological mechanisms obtained combining observations from different frequency bands. We present advancements in waveform modeling dedicated to third-generation observatories, along with open tools developed within the ET Collaboration for assessing the scientific potentials of different detector configurations. We finally discuss the data analysis challenges posed by third-generation observatories, which will enable access to large populations of sources and provide unprecedented precision.
APA:
Abac, A., Abramo, R., Albanesi, S., Albertini, A., Agapito, A., Agathos, M.,... Zmija, A. (2026). The Science of the Einstein Telescope. Journal of Cosmology and Astroparticle Physics, 2026(3). https://doi.org/10.1088/1475-7516/2026/03/081
MLA:
Abac, Adrian, et al. "The Science of the Einstein Telescope." Journal of Cosmology and Astroparticle Physics 2026.3 (2026).
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