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Joint analysis constraints on the physics of the first galaxies with low frequency radio astronomy data

, , , , , , , and . (2023)cite arxiv:2301.03298Comment: Submitted.

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Peering into the Dark (Ages) with Low-Frequency Space Interferometers, , , , , , , , , and 21 other author(s). (2019)cite arxiv:1908.04296Comment: 24 pages, 8 figures, 3 tables; White paper submitted to ESA Voyage 2050.Improved Constraints on the 21 cm EoR Power Spectrum and the X-Ray Heating of the IGM with HERA Phase I Observations, , , , , , , , , and 84 other author(s). (2022)cite arxiv:2210.04912Comment: 55 pages, 37 figures. Submitted to ApJ. Corresponding author: Joshua S. Dillon.HERA Phase I Limits on the Cosmic 21-cm Signal: Constraints on Astrophysics and Cosmology During the Epoch of Reionization, , , , , , , , , and 74 other author(s). (2021)cite arxiv:2108.07282Comment: 40 pages, 19 figures, submitted to ApJ.Anticipating a New-Physics Signal in Upcoming 21-cm Power Spectrum Observations, , , and . (2022)cite arxiv:2212.08082Comment: 5 pages + appendices, 2 figures.Joint analysis constraints on the physics of the first galaxies with low frequency radio astronomy data, , , , , , , and . (2023)cite arxiv:2301.03298Comment: Submitted.Strong 21-cm fluctuations and anisotropy due to the line-of-sight effect of radio galaxies at cosmic dawn, , , and . (2023)cite arxiv:2301.04585Comment: Submitted to MNRAS.The subtlety of Ly-a photons: changing the expected range of the 21-cm signal, , and . (2021)cite arxiv:2101.01777.Machine Learning to Decipher the Astrophysical Processes at Cosmic Dawn, , , and . (2022)cite arxiv:2201.08205Comment: Submitted to MNRAS on January 19th.Extracting the Global Signal from 21-cm Fluctuations: the Multi-Tracer Approach, , and . (2019)cite arxiv:1904.10857Comment: 12 pages, 9 figures, submitted to MNRAS.