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Science with the Einstein Telescope: a comparison of different designs

Journal of Cosmology and Astroparticle Physics · 2023 · Vol. 2023(07) · pp. 068–068
M. BranchesiMichele MaggioreDavid AlonsoC. BadgerB. BanerjeeF. BeirnaertEnis BelgacemS. BhagwatGuillaume BoileauSsohrab BorhanianDaniel D. BrownM. ChanGiulia CusinS. L. DanilishinJerome DegallaixValerio De LucaArnab DhaniTim DietrichU. DupletsaStefano FoffaGabriele FrancioliniA. FreiseG. GemmeB. GoncharovArchisman GhoshF. GulminelliPawan Kumar GuptaPawan Kumar GuptaJ. HarmsNandini HazraS. HildTanja HindererI. S. HengFrancesco IacovelliJustin JanquartK. JanssensA. C. JenkinsC. V. KalaghatgiXhesika KoroveshiTjonnie G. F. LiYufeng LiEleonora LoffredoElisa MaggioMichele MancarellaMichela MapelliK. MartinovicAndrea MaselliP. M. MeyersA. L. MillerC. MondalNiccolò MuttoniHarsh NarolaMicaela OertelG. OganesyanCostantino PacilioC. PalombaPaolo PaniAntonio PasqualettiAlbino PeregoC. PérigoisMauro PieroniO. J. PiccinniAnna PuecherPaola PuppoAngelo RicciardoneAntonio RiottoS. RonchiniMairi SakellariadouA. SamajdarFilippo SantoliquidoB. S. SathyaprakashJ. SteinlechnerSebastian SteinlechnerA. UtinaChris Van Den BroeckT. Zhang

Abstract

Abstract The Einstein Telescope (ET), the European project for a third-generation gravitational-wave detector, has a reference configuration based on a triangular shape consisting of three nested detectors with 10 km arms, where each detector has a 'xylophone' configuration made of an interferometer tuned toward high frequencies, and an interferometer tuned toward low frequencies and working at cryogenic temperature. Here, we examine the scientific perspectives under possible variations of this reference design. We perform a detailed evaluation of the science case for a single triangular geometry observatory, and we compare it with the results obtained for a network of two L-shaped detectors (either parallel or misaligned) located in Europe, considering different choices of arm-length for both the triangle and the 2L geometries. We also study how the science output changes in the absence of the low-frequency instrument, both for the triangle and the 2L configurations. We examine a broad class of simple 'metrics' that quantify the science output, related to compact binary coalescences, multi-messenger astronomy and stochastic backgrounds, and we then examine the impact of different detector designs on a more specific set of scientific objectives.

Pulsars and Gravitational Waves ResearchSuperconducting and THz Device TechnologyCosmology and Gravitation TheoriesPhysicsDetectorEinstein TelescopeTelescopeInterferometryObservatoryGravitational waveBinary numberOpticsEinstein

Funding

  • Science and Technology Facilities Council
Citations
346
FWCI
62.00
field-weighted impact
References
651
Percentile
100%
vs. same field & year
Citations per year
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