المساق
arXiv 2015-11-10 DOI 10.1093/mnras/stv2635 0 مشاهدة

Radio recombination lines from obscured quasars with the SKA

Manti, Serena · Gallerani, Simona · Ferrara, Andrea · Feruglio, Chiara · Graziani, Luca · Bernardi, Gianni

الأصل · EN

We explore the possibility of detecting hydrogen radio recombination lines from 0 < z < 10 quasars. We compute the expected Hnalpha flux densities as a function of absolute magnitude and redshift by considering (i) the range of observed AGN spectral indices from UV to X-ray bands, (ii) secondary ionizations from X-ray photons, and (iii) stimulated emission due to nonthermal radiation. All these effects are important to determine the line fluxes. We find that the combination of slopes: alphaₓ,hard = -1.11, alphaₓ,soft = -0.7, alphaₑUV = -1.3, alphaᵤV = -1.7, maximizes the expected flux, fₕnalpha = 10 microJy for z = 7 quasars with MₐB = -27 in the n = 50 lines; allowed SED variations produce variations by a factor of 3 around this value. Secondaries boost the line intensity by a factor of 2 to 4, while stimulated emission in high-z quasars with MₐB = -26 provides an extra boost to RRL flux observed at nu = 1 GHz if recombinations arise in HII regions with Tₑ = 10³-5 K, nₑ = 10³-5 cm-3. We compute the sensitivity required for a 5sigma detection of Hnalpha lines using the SKA, finding that the SKA-MID could detect sources with MₐB < -27 (MₐB < -26) at z < 8 (z < 3) in less than 100 hrs of observing time. These observations could open new paths to searches for obscured SMBH progenitors, complementing X-ray, optical/IR and sub-mm surveys.

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