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ZAIGA: Zhaoshan Long-baseline Atom Interferometer Gravitation Antenna

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arxiv 1903.09288 v4 pith:LIZQLYWX submitted 2019-03-22 physics.atom-ph

classification physics.atom-ph
keywords atomzaigaclocksfacilitygravitationinterferometerlong-baselinewill
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The Zhaoshan long-baseline Atom Interferometer Gravitation Antenna (ZAIGA) is a new type of underground laser-linked interferometer facility, and is currently under construction. It is in the 200-meter-on-average underground of a mountain named Zhaoshan which is about 80 km southeast to Wuhan. ZAIGA will be equipped with long-baseline atom interferometers, high-precision atom clocks, and large-scale gyros. ZAIGA facility will take an equilateral triangle configuration with two 1-km-apart atom interferometers in each arm, a 300-meter vertical tunnel with atom fountain and atom clocks mounted, and a tracking-and-ranging 1-km-arm-length prototype with lattice optical clocks linked by locked lasers. The ZAIGA facility will be used for experimental research on gravitation and related problems including gravitational wave detection, high-precision test of the equivalence principle of micro-particles, clock based gravitational red-shift measurement, rotation measurement and gravito-magnetic effect.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Detection prospects for the Cosmic Neutrino Background using matter interferometers

    hep-ph 2025-11 conditional novelty 6.0 of 10

    The Cosmic Neutrino Background is predicted to induce phase shifts of ~1e-22 to 1e-14 rad in matter interferometers, far below current and near-future sensitivity.

  2. Characterisation of a strontium cold atom source using fluorescence spectroscopy and time-of-flight

    physics.atom-ph 2026-07 conditional novelty 4.0 of 10

    At push saturation 0.45 a strontium 2D-MOT source delivers about 1.5–1.7×10^8 capturable atoms/s below 30 m/s, with unidirectional-probe data scaled by a simulation factor to match counter-propagating results.

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