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  • Oxford University Press  (2)
  • 2015-2019  (2)
  • 2018
  • 2016  (2)
  • 1
    Publication Date: 2016-02-12
    Description: We present statistical properties of diffuse Lyα haloes (LAHs) around high- z star-forming galaxies with large Subaru samples of Lyα emitters (LAEs) at z = 2.2. We make subsamples defined by the physical quantities of LAEs’ central Lyα luminosities, ultraviolet (UV) magnitudes, Lyα equivalent widths, and UV slopes, and investigate LAHs’ radial surface brightness (SB) profiles and scale lengths r n as a function of these physical quantities. We find that there exist prominent LAHs around LAEs with faint Lyα luminosities, bright UV luminosities, and small Lyα equivalent widths in cumulative radial Lyα SB profiles. We confirm this trend with the anticorrelation between r n and Lyα luminosities (equivalent widths) based on the Spearman's rank correlation coefficient that is = –0.9 (–0.7) corresponding to the 96 per cent (93 per cent) confidence level, although the correlation between r n and UV magnitudes is not clearly found in the rank correlation coefficient. Our results suggest that LAEs with properties similar to typical Lyman-break galaxies (with faint Lyα luminosities and small equivalent widths) possess more prominent LAHs. We investigate scenarios for the major physical origins of LAHs with our results. Because we find relatively small Lyα equivalent widths up to 77 Å in LAHs that include LAEs’ central components, these results suggest that the cold stream scenario is not preferred. There remain two possible scenarios of Lyα scattering in circumgalactic medium and satellite galaxies that cannot be tested with our observational data.
    Print ISSN: 0035-8711
    Electronic ISSN: 1365-2966
    Topics: Physics
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  • 2
    Publication Date: 2016-12-10
    Description: We present physical properties of spectroscopically confirmed Lyα emitters (LAEs) with very large rest-frame Lyα equivalent widths EW 0 (Lyα). Although the definition of large EW 0 (Lyα) LAEs is usually difficult due to limited statistical and systematic uncertainties, we identify six LAEs selected from ~3000 LAEs at z ~ 2 with reliable measurements of EW 0 (Lyα) ~= 200–400 Å given by careful continuum determinations with our deep photometric and spectroscopic data. These large EW 0 (Lyα) LAEs do not have signatures of AGN, but notably small stellar masses of M * = 10 7–8 M and high specific star formation rates (star formation rate per unit galaxy stellar mass) of ~100 Gyr –1 . These LAEs are characterized by the median values of L (Lyα) = 3.7 x 10 42  erg s –1 and M UV = –18.0 as well as the blue UV continuum slope of β = –2.5 ± 0.2 and the low dust extinction $E(B-V)_{\rm *} = 0.02^{+0.04}_{-0.02}$ , which indicate a high median Lyα escape fraction of $f_{\rm esc}^{\rm Ly\alpha }=0.68\pm 0.30$ . This large $f_{\rm esc}^{\rm Ly\alpha }$ value is explained by the low H i column density in the interstellar medium which is consistent with full width at half-maximum (FWHM) of the Lyα line, FWHM(Lyα) = 212 ± 32 km s –1 , significantly narrower than those of small EW 0 (Lyα) LAEs. Based on the stellar evolution models, our observational constraints of the large EW 0 (Lyα), the small β, and the rest-frame He ii EW imply that at least a half of our large EW 0 (Lyα) LAEs would have young stellar ages of 20 Myr and very low metallicities of Z 〈 0.02 Z regardless of the star formation history.
    Print ISSN: 0035-8711
    Electronic ISSN: 1365-2966
    Topics: Physics
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