Radio recombination lines (RRLs) can be used to determine the emission measure unambiguously along the Galactic plane. We use the deep (2100s per beam) HI Parkes Zone of Avoidance survey which includes 3 RRLs (H166α, H167α and H168α) within its bandwidth. The region ℓ=36\degr to 44\degr, b=−4\degr to +4\degr is chosen to include emission from the Local, Sagittarius and Scutum arms. An 8\degr×8\degr data cube centred at (ℓ,b)=(40\degr,0\degr) is constructed of RRL spectra with velocity and spatial resolution of 27\kms and 15.5 arcmin, respectively. Well-known \hii regions are identified as well as the diffuse RRL emission on the Galactic plane. A Galactic latitude section of the integrated RRL emission across the Galactic plane delineates the brightness temperature (Tb) distribution which has a half-power width in latitude of ≃1\fdg5. A value of the electron temperature Te≃8000 K is derived from a comparison with the WMAP free-free MEM model. The Tb distribution from the present RRL data is combined with the WMAP 5-yr data to derive the anomalous dust on the Galactic ridge. In this paper we demonstrate that diffuse ionized emission on the Galactic ridge can be recovered using RRLs from the ZOA survey. This method is therefore able to complement the \ha data at low Galactic latitudes, to enable an all-sky free-free template to be derived.
@article{arxiv.0912.2290,
title = {Diffuse RRL emission on the Galactic plane between l=36 to 44 degrees},
author = {Marta I. R. Alves and Rodney D. Davies and Clive Dickinson and Richard J. Davis and Robert R. Auld and Mark Calabretta and Lister Staveley-Smith},
journal= {arXiv preprint arXiv:0912.2290},
year = {2009}
}