Low-Frequency Radio Recombination Lines Away From the Inner Galactic Plane
arXiv:2302.14185 · doi:10.3847/1538-3881/ad08ba
Abstract
Diffuse radio recombination lines (RRLs) in the Galaxy are possible foregrounds for redshifted 21~cm experiments. We use EDGES drift scans centered at ~declination to characterize diffuse RRLs across the southern sky. We find RRLs averaged over the large antenna beam () reach minimum amplitudes between right ascensions~2-6~h. In this region, the C absorption amplitude is ~mK (1) averaged over 50-87~MHz ( for the 21~cm line) and increases strongly as frequency decreases. C and H lines are consistent with no detection with amplitudes of and ~mK (1), respectively. At 108-124.5~MHz () in the same region, we find no evidence for carbon or hydrogen lines at the noise level of 3.4~mK (1). Conservatively assuming observed lines come broadly from the diffuse interstellar medium, as opposed to a few compact regions, these amplitudes provide upper limits on the intrinsic diffuse lines. The observations support expectations that Galactic RRLs can be neglected as significant foregrounds for a large region of sky until redshifted 21~cm experiments, particularly those targeting Cosmic Dawn, move beyond the detection phase. We fit models of the spectral dependence of the lines averaged over the large beam of EDGES, which may contain multiple line sources with possible line blending, and find that including degrees of freedom for expected smooth, frequency-dependent deviations from local thermodynamic equilibrium (LTE) is preferred over simple LTE assumptions for C and H lines. For C we estimate departure coefficients along the inner Galactic Plane and away from the inner Galactic Plane.
25 pages, 14 figures, 3 tables, Accepted in Astronomical Journal
References in corpus (21)
- Cosmology at Low Frequencies: The 21 cm Transition and the High-Redshift Universe
- Observational constraints on Cosmic Reionization
- The Epoch of Reionization Window: I. Mathematical Formalism
- First Results from HERA Phase I: Upper Limits on the Epoch of Reionization 21 cm Power Spectrum
- Signature of Excess Radio Background in the 21-cm Global Signal and Power Spectrum
- Improved Constraints on the 21 cm EoR Power Spectrum and the X-Ray Heating of the IGM with HERA Phase I Observations
- Results from EDGES High-Band: I. Constraints on Phenomenological Models for the Global cm Signal
- Improved Measurement of the Spectral Index of the Diffuse Radio Background Between 90 and 190 MHz
- The HI/OH/Recombination line survey of the inner Milky Way (THOR): data release 2 and HI overview
- Spectral Index of the Diffuse Radio Background Between 50 and 100 MHz
- Validation of EDGES Low-Band Antenna Beam Model
- Carbon and hydrogen radio recombination lines from the cold clouds towards Cassiopeia A
- Low Frequency Carbon Radio Recombination Lines I: Calculations of Departure Coefficients
- Validation of the HERA Phase I Epoch of Reionization 21 cm Power Spectrum Software Pipeline
- Absolute Calibration of Diffuse Radio Surveys at 45 and 150 MHz
- LOFAR observations of decameter carbon radio recombination lines towards Cassiopeia A
- Carbon radio recombination lines from gigahertz to megahertz frequencies towards Orion A
- Survey of Ionized Gas of the Galaxy, Made with the Arecibo telescope (SIGGMA): Inner Galaxy Data Release
- Low Frequency Carbon Radio Recombination Lines II: The Diffuse Interstellar Medium
- SKA-Low Intensity Mapping Pathfinder Updates: Deeper 21 cm Power Spectrum Limits from Improved Analysis Frameworks
- Spectroscopy with the Engineering Development Array: cold H at 63 MHz towards the Galactic Centre