The first power spectrum limit on the 21-cm signal of neutral hydrogen during the Cosmic Dawn at z=20-25 from LOFAR
B. K. Gehlot (1), F. G. Mertens (1), L. V. E. Koopmans (1), M. A., Brentjens (2), S. Zaroubi (1,3), B. Ciardi (4), A. Ghosh (5,6), M. Hatef, (1,2), I. T. Iliev (7), V. Jeli\'c (8), R. Kooistra (1), F. Krause (1,9), G., Mellema (10), M. Mevius (2), M. Mitra (1)

TL;DR
This paper reports the first upper limits on the 21-cm power spectrum from the Cosmic Dawn era at redshifts 20-25 using LOFAR data, demonstrating calibration techniques and analyzing noise and systematics.
Contribution
It introduces a multiple pointing calibration method for LOFAR-LBA data and provides the first power spectrum upper limits at these redshifts.
Findings
Achieved 2-sigma upper limits on the 21-cm power spectrum at z=20-25.
Identified an unexplained excess noise in Stokes I data.
Demonstrated calibration techniques to reduce variance and systematics.
Abstract
Observations of the redshifted 21-cm hyperfine line of neutral hydrogen from early phases of the Universe such as Cosmic Dawn and the Epoch of Reionization promise to open a new window onto the early formation of stars and galaxies. We present the first upper limits on the power spectrum of redshifted 21-cm brightness temperature fluctuations in the redshift range ( MHz frequency range) using 14 hours of data obtained with the LOFAR-Low Band Antenna (LBA) array. We also demonstrate the application of a multiple pointing calibration technique to calibrate the LOFAR-LBA dual-pointing observations centred on the North Celestial Pole and the radio galaxy 3C220.3. We observe an unexplained excess of in Stokes noise compared to Stokes for the two observed fields, which decorrelates on seconds and might have a physical origin. We…
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