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Criteria for identifying and evaluating locations that could potentially host the Cosmic Explorer observatories

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arxiv 2410.00293 v1 pith:PGHQ7BQR submitted 2024-10-01 physics.ins-det astro-ph.IM

classification physics.ins-detastro-ph.IM
keywords observatoriesaccessarmscosmiccriteriaexplorergravitational-wavehost
verification ladder T0 review T1 audit T2 compute T3 formal
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Cosmic Explorer (CE) is a next-generation ground-based gravitational-wave observatory that is being designed in the 2020s and is envisioned to begin operations in the 2030s together with the Einstein Telescope in Europe. The CE concept currently consists of two widely separated L-shaped observatories in the United States, one with 40 km-long arms and the other with 20 km-long arms. This order of magnitude increase in scale with respect to the LIGO-Virgo-KAGRA observatories will, together with technological improvements, deliver an order of magnitude greater astronomical reach, allowing access to gravitational waves from remnants of the first stars and opening a wide discovery aperture to the novel and unknown. In addition to pushing the reach of gravitational-wave astronomy, CE endeavors to approach the lifecycle of large scientific facilities in a way that prioritizes mutually beneficial relationships with local and Indigenous communities. This article describes the (scientific, cost and access, and social) criteria that will be used to identify and evaluate locations that could potentially host the CE observatories.

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  1. Probing Binary Neutron Star Merger Ejecta and Remnants with Gravitational Wave and Radio Observations

    astro-ph.HE 2025-06 conditional novelty 6.0 of 10

    A self-consistent forecast shows well-localized binary neutron star mergers with possible neutron star remnants will be detectable in radio at rates from a few per year now to hundreds per year with next-generation detectors.

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