Search for the Epoch of Reionization with HERA: upper limits on the closure phase delay power spectrum

Author:

Keller Pascal M1ORCID,Nikolic Bojan1,Thyagarajan Nithyanandan2,Carilli Chris L3,Bernardi Gianni456,Charles Ntsikelelo5ORCID,Bester Landman65,Smirnov Oleg M56,Kern Nicholas S7,Dillon Joshua S8ORCID,Hazelton Bryna J910,Morales Miguel F9ORCID,Jacobs Daniel C11,Parsons Aaron R8,Abdurashidova Zara8,Adams Tyrone6,Aguirre James E12ORCID,Alexander Paul1,Ali Zaki S8,Baartman Rushelle6,Balfour Yanga6,Beardsley Adam P1113,Billings Tashalee S12,Bowman Judd D11,Bradley Richard F14,Bull Philip1516,Burba Jacob1517,Carey Steven1,Cheng Carina8,DeBoer David R18,Acedo Eloy de Lera1,Dexter Matt18,Eksteen Nico6,Ely John1,Ewall-Wice Aaron819ORCID,Fagnoni Nicolas1ORCID,Fritz Randall6,Furlanetto Steven R20ORCID,Gale-Sides Kingsley1,Glendenning Brian3,Gorthi Deepthi8,Greig Bradley21ORCID,Grobbelaar Jasper6,Halday Ziyaad6,Hewitt Jacqueline N722,Hickish Jack18,Julius Austin6,Kariseb MacCalvin6,Kerrigan Joshua17,Kittiwisit Piyanat16ORCID,Kohn Saul A12ORCID,Kolopanis Matthew11ORCID,Lanman Adam17ORCID,Plante Paul La812,Liu Adrian23ORCID,Loots Anita6,Ma Yin-Zhe24ORCID,MacMahon David Harold Edward18,Malan Lourence6,Malgas Cresshim6,Malgas Keith6,Marero Bradley6,Martinot Zachary E12,Mesinger Andrei25ORCID,Molewa Mathakane6,Mosiane Tshegofalang6,Murray Steven G11ORCID,Neben Abraham R7,Nuwegeld Hans6,Pascua Robert823,Patra Nipanjana8,Pieterse Samantha6,Pober Jonathan C17,Razavi-Ghods Nima1,Robnett James3,Rosie Kathryn6,Santos Mario G616,Sims Peter23ORCID,Smith Craig6,Swarts Hilton6,Van Wyngaarden Pieter6,Williams Peter K G2627ORCID,Zheng Haoxuan7ORCID

Affiliation:

1. Cavendish Astrophysics, University of Cambridge , Cambridge CB3 0HE, UK

2. Commonwealth Scientific and Industrial Research Organisation (CSIRO), Space & Astronomy , P. O. Box 1130, Bentley, WA 6102, Australia

3. National Radio Astronomy Observatory , Socorro, NM 87801, USA

4. INAF-Istituto di Radioastronomia , via Gobetti 101, I-40129 Bologna, Italy

5. Department of Physics and Electronics, Rhodes University , PO Box 94, Grahamstown 6140, South Africa

6. South African Radio Astronomy Observatory , Black River Park, 2 Fir Street, Observatory, Cape Town 7925, South Africa

7. Department of Physics, Massachusetts Institute of Technology , Cambridge, MA 02139, USA

8. Department of Astronomy, University of California , Berkeley, CA 94720-7300, USA

9. Department of Physics, University of Washington , Seattle, WA 98195-1560, USA

10. eScience Institute, University of Washington , Seattle, WA 98195-1560, USA

11. School of Earth and Space Exploration, Arizona State University , Tempe, AZ 85287-1404, USA

12. Department of Physics and Astronomy, University of Pennsylvania , Philadelphia, PA 19104-6396, USA

13. Department of Physics, Winona State University , Winona, MN 55987, USA

14. National Radio Astronomy Observatory , Charlottesville, VA 22903-4608, USA

15. Jodrell Bank Centre for Astrophysics, University of Manchester , Manchester M13 9PL, UK

16. Department of Physics and Astronomy, University of Western Cape , Cape Town 7535, South Africa

17. Department of Physics, Brown University , Providence, RI 02912, USA

18. Radio Astronomy Lab, University of California , Berkeley, CA 94720-3411, USA

19. Department of Physics, University of California , Berkeley, CA 94720-7300, USA

20. Department of Physics and Astronomy, University of California , Los Angeles, CA 90095-1547, USA

21. School of Physics, University of Melbourne , Parkville, VIC 3010, Australia

22. MIT Kavli Institute, Massachusetts Institute of Technology , Cambridge, MA 02139, USA

23. Department of Physics and McGill Space Institute, McGill University , 3600 University Street, Montreal, QC H3A 2T8, Canada

24. School of Chemistry and Physics, University of KwaZulu-Natal , Scottsville, 3209, South Africa

25. Scuola Normale Superiore , PI, I-56126 Pisa, Italy

26. Center for Astrophysics , Harvard & Smithsonian, Cambridge, MA 02138, USA

27. American Astronomical Society , Washington, DC 20006, USA

Abstract

ABSTRACT Radio interferometers aiming to measure the power spectrum of the redshifted 21 cm line during the Epoch of Reionization (EoR) need to achieve an unprecedented dynamic range to separate the weak signal from overwhelming foreground emissions. Calibration inaccuracies can compromise the sensitivity of these measurements to the effect that a detection of the EoR is precluded. An alternative to standard analysis techniques makes use of the closure phase, which allows one to bypass antenna-based direction-independent calibration. Similarly to standard approaches, we use a delay spectrum technique to search for the EoR signal. Using 94 nights of data observed with Phase I of the Hydrogen Epoch of Reionization Array (HERA), we place approximate constraints on the 21 cm power spectrum at z = 7.7. We find at 95 per cent confidence that the 21 cm EoR brightness temperature is ≤(372)2 ‘pseudo’ mK2 at 1.14 ‘pseudo’ h Mpc−1, where the ‘pseudo’ emphasizes that these limits are to be interpreted as approximations to the actual distance scales and brightness temperatures. Using a fiducial EoR model, we demonstrate the feasibility of detecting the EoR with the full array. Compared to standard methods, the closure phase processing is relatively simple, thereby providing an important independent check on results derived using visibility intensities, or related.

Funder

National Science Foundation

Gordon and Betty Moore Foundation

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. The radio-loud fraction of quasars at z > 6;Monthly Notices of the Royal Astronomical Society;2024-02-08

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