4.4 Article

ELGAR-a European Laboratory for Gravitation and Atom-interferometric Research

期刊

CLASSICAL AND QUANTUM GRAVITY
卷 37, 期 22, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.1088/1361-6382/aba80e

关键词

gravity; gravitational waves; research infrastructure; cold atoms; matter-wave interferometry

资金

  1. French State through the 'Agence Nationale de la Recherche' (ANR) [Pre-ELGAR ANR-17-MRS5-0004-01, ANR-11-EQPX-0028, ANR-10-IDEX-03-02]
  2. ANR (project EOSBECMR)
  3. IdEx Bordeaux-LAPHIA (project OE-TWR)
  4. QuantERA ERA-NET (project TAIOL)
  5. Aquitaine Region (projet IASIG3D)
  6. Aquitaine Region (projet USOFF)
  7. German Space Agency (DLR)
  8. Federal Ministry for Economic Affairs and Energy (BMWi) [50WM1556, 50WM1956, 50WP1706, DLR 50WM1641, 50WM1952, 50WP1700, 50WM1861, 50WM2060, 50RK1957, 50WP1432, 50WP1953, 50WP1702]
  9. DLR Institute DLR-SI
  10. DLR Institute DLR-QT
  11. China Scholarships Council [201806010364]
  12. Association Nationale de la Recherche et de la Technologie [2018/1565]
  13. Ministry of Economy and Business of Spain (MINECO) [ESP2015-67234-P, ESP2017-90084-P]
  14. AGAUR (Catalan government) [2017-SGR-1469]
  15. Sorbonne Universites (Emergence project LORINVACC)
  16. Conseil Scientifique de l'Observatoire de Paris
  17. Ville de Paris (Emergence programme HSENS-MWGRAV)
  18. ANR (project PIMAI)
  19. Fundamental Physics and Gravitational Waves (PhyFOG) programme of Observatoire de Paris
  20. COST action GWverse [CA16104]
  21. COST action AtomQT (Horizon 2020 Framework Programme of the European Union) [CA16221]
  22. Federal Ministry of Education and Research (BMBF) through the funding program Photonics Research Germany [13N14875]
  23. 'Niedersachsisches Vorab' through the 'Quantum- and Nano-Metrology (QUANOMET)' initiative within the project QT3
  24. Forderung von Wissenschaft und Technik in Forschung und Lehre
  25. Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) [EXC-2123, 390837967]
  26. Italian 'Ministero dell'Istruzione, Universita e Ricerca' through the funding program PRIN [2015L33WAK_003]
  27. Berlin School of Optical Sciences and Quantum Technology (BOS.QT)
  28. [CRC 1227]
  29. EPSRC [EP/T001046/1] Funding Source: UKRI

向作者/读者索取更多资源

Gravitational waves (GWs) were observed for the first time in 2015, one century after Einstein predicted their existence. There is now growing interest to extend the detection bandwidth to low frequency. The scientific potential of multi-frequency GW astronomy is enormous as it would enable to obtain a more complete picture of cosmic events and mechanisms. This is a unique and entirely new opportunity for the future of astronomy, the success of which depends upon the decisions being made on existing and new infrastructures. The prospect of combining observations from the future space-based instrument LISA together with third generation ground based detectors will open the way toward multi-band GW astronomy, but will leave the infrasound (0.1-10 Hz) band uncovered. GW detectors based on matter wave interferometry promise to fill such a sensitivity gap. We propose the European Laboratory for Gravitation and Atom-interferometric Research (ELGAR), an underground infrastructure based on the latest progress in atomic physics, to study space-time and gravitation with the primary goal of detecting GWs in the infrasound band. ELGAR will directly inherit from large research facilities now being built in Europe for the study of large scale atom interferometry and will drive new pan-European synergies from top research centers developing quantum sensors. ELGAR will measure GW radiation in the infrasound band with a peak strain sensitivity of 3.3x10(-22)/root Hz at 1.7 Hz. The antenna will have an impact on diverse fundamental and applied research fields beyond GW astronomy, including gravitation, general relativity, and geology.

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