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The XMM-Newton/2dF survey - II. The nature of X-ray-faint optically bright X-ray sources

Authors :
Universitat Politècnica de Catalunya. Departament d'Enginyeria Minera, Industrial i TIC
Georgakakis, Antonis
Georgantopoulos, Ioannis
Vallbé Mumbrú, Marc
Kolokotronis, Vaggelis
Basilakos, Spyros
Plionis, Manolis
Stewart, Gordon C.
Shanks, Tom
Boyle, Brian J.
Universitat Politècnica de Catalunya. Departament d'Enginyeria Minera, Industrial i TIC
Georgakakis, Antonis
Georgantopoulos, Ioannis
Vallbé Mumbrú, Marc
Kolokotronis, Vaggelis
Basilakos, Spyros
Plionis, Manolis
Stewart, Gordon C.
Shanks, Tom
Boyle, Brian J.
Publication Year :
2004

Abstract

In this paper we investigate the properties of low X-ray-to-optical flux ratio sources detected in a wide area (2.5deg^2) shallow (f(0.5-8keV)~10e-14cgs) XMM-Newton survey. We find a total of 26 sources (5% of the total X-ray selected population) with log f_X/f_{opt}<-0.9 to the above flux limit. Optical spectroscopy is available for 20 of these low X-ray-to-optical flux ratio objects. Most of them are found to be associated with Galactic stars (total of 8) and broad line AGNs (total of 8).We also find two sources with optical spectra showing absorption and/or narrow emission lines and X-ray/optical properties suggesting AGN activity. Another two sources are found to be associated with low redshift galaxies with narrow emission line optical spectra, X-ray luminosities L_X(0.5-8keV)~10e41cgs and logf_X/f_opt ~ -2 suggesting `normal' star-forming galaxies. Despite the small number statistics the sky density of `normal' X-ray selected star-forming galaxies at the flux limit of the present sample is low consistent with previous ROSAT HRI deep surveys. Also, the number density estimated here is in good agreement with both the logN-logS of `normal' galaxies in the Chandra Deep Field North (extrapolated to bright fluxes) and model predictions based on the X-ray luminosity function of local star-forming galaxies.<br />Peer Reviewed<br />Postprint (published version)

Details

Database :
OAIster
Notes :
11 p., application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1110005949
Document Type :
Electronic Resource