Spectral index of the Galactic foreground emission in the 50-87 MHz range
arXiv:2011.03994 · doi:10.1093/mnras/stab1363
Abstract
Total-power radiometry with individual meter-wave antennas is a potentially effective way to study the Cosmic Dawn () through measurement of sky brightness arising from the ~cm transition of neutral hydrogen, provided this can be disentangled from much stronger Galactic and extra-galactic foregrounds. In the process, measured spectra of integrated sky brightness temperature can be used to quantify the foreground emission properties. In this work, we analyze a subset of data from the Large-aperture Experiment to Detect the Dark Age (LEDA) in the range ~MHz and constrain the foreground spectral index in the northern sky visible from mid-latitudes. We focus on two zenith-directed LEDA radiometers and study how estimates of vary with local sidereal time (LST). We correct for the effect of gain pattern chromaticity and compare estimated absolute temperatures with simulations. We develop a reference dataset consisting of 14 days of optimal condition observations. Using this dataset we estimate, for one radiometer, that varies from at LST~~h to a steeper at LST~~h, consistently with sky models and previous southern sky measurements. In the LST~~h range, however, we find that fluctuates between and (data scatter ). We observe a similar vs. LST trend for the second radiometer, although with slightly smaller , in the range, over ~h of LST (data scatter ). Combining all data gathered during the extended campaign between mid-2018 to mid-2019, and focusing on the LST~~h range, we infer good instrument stability and find with .
revised version, new figures
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