The Lyman Continuum Escape Survey. II. Ionizing Radiation as a Function of the [OIII]/[OII] Line Ratio

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The Lyman Continuum Escape Survey. II. Ionizing Radiation as a Function of the [OIII]/[OII] Line Ratio. / Nakajima, Kimihiko; Ellis, Richard S.; Robertson, Brant E.; Tang, Mengtao; Stark, Daniel P.

In: Astrophysical Journal, Vol. 889, No. 2, 161, 01.02.2020.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Nakajima, K, Ellis, RS, Robertson, BE, Tang, M & Stark, DP 2020, 'The Lyman Continuum Escape Survey. II. Ionizing Radiation as a Function of the [OIII]/[OII] Line Ratio', Astrophysical Journal, vol. 889, no. 2, 161. https://doi.org/10.3847/1538-4357/ab6604

APA

Nakajima, K., Ellis, R. S., Robertson, B. E., Tang, M., & Stark, D. P. (2020). The Lyman Continuum Escape Survey. II. Ionizing Radiation as a Function of the [OIII]/[OII] Line Ratio. Astrophysical Journal, 889(2), [161]. https://doi.org/10.3847/1538-4357/ab6604

Vancouver

Nakajima K, Ellis RS, Robertson BE, Tang M, Stark DP. The Lyman Continuum Escape Survey. II. Ionizing Radiation as a Function of the [OIII]/[OII] Line Ratio. Astrophysical Journal. 2020 Feb 1;889(2). 161. https://doi.org/10.3847/1538-4357/ab6604

Author

Nakajima, Kimihiko ; Ellis, Richard S. ; Robertson, Brant E. ; Tang, Mengtao ; Stark, Daniel P. / The Lyman Continuum Escape Survey. II. Ionizing Radiation as a Function of the [OIII]/[OII] Line Ratio. In: Astrophysical Journal. 2020 ; Vol. 889, No. 2.

Bibtex

@article{13a02b7fc3de4a5e97ed4ea6364b487d,
title = "The Lyman Continuum Escape Survey. II. Ionizing Radiation as a Function of the [OIII]/[OII] Line Ratio",
abstract = "We discuss the rest-frame optical emission line spectra of a large (similar to 50) sample of z similar to 3.1 Ly alpha emitting galaxies (LAEs) whose physical properties suggest such sources are promising analogs of galaxies in the reionization era. Reliable Lyman continuum (LyC) escape fractions have now been determined for a large sample of such LAEs from the LymAn Continuum Escape Survey (LACES) undertaken via deep Hubble Space Telescope imaging in the SSA22 survey area reported in Fletcher et al. Using new measures of [O II] emission secured from Keck MOSFIRE spectra we re-examine, for a larger sample, earlier claims that LyC leakages may correlate with the nebular emission line ratio [O III]/[O II] as expected for density-bound H II regions. We find that a large [O III]/[O II] line ratio is indeed a necessary condition for LyC leakage, strengthening earlier claims made using smaller samples at various redshifts. However, not all LAEs with large [O III]/[O II] line ratios are leakers and leaking radiation appears not to be associated with differences in other spectral diagnostics. This suggests the detection of leaking radiation is modulated by an additional property, possibly the viewing angle for porous H II regions. We discuss our new results in the context of the striking bimodality of LAE leakers and non-leakers found in the LACES program and the implications for the sources of cosmic reionization.",
keywords = "CENT LEAKAGE, GALAXIES, ULTRAVIOLET, EVOLUTION, EMITTERS, PHOTONS, COMPACT",
author = "Kimihiko Nakajima and Ellis, {Richard S.} and Robertson, {Brant E.} and Mengtao Tang and Stark, {Daniel P.}",
year = "2020",
month = feb,
day = "1",
doi = "10.3847/1538-4357/ab6604",
language = "English",
volume = "889",
journal = "Astrophysical Journal",
issn = "0004-637X",
publisher = "Institute of Physics Publishing, Inc",
number = "2",

}

RIS

TY - JOUR

T1 - The Lyman Continuum Escape Survey. II. Ionizing Radiation as a Function of the [OIII]/[OII] Line Ratio

AU - Nakajima, Kimihiko

AU - Ellis, Richard S.

AU - Robertson, Brant E.

AU - Tang, Mengtao

AU - Stark, Daniel P.

PY - 2020/2/1

Y1 - 2020/2/1

N2 - We discuss the rest-frame optical emission line spectra of a large (similar to 50) sample of z similar to 3.1 Ly alpha emitting galaxies (LAEs) whose physical properties suggest such sources are promising analogs of galaxies in the reionization era. Reliable Lyman continuum (LyC) escape fractions have now been determined for a large sample of such LAEs from the LymAn Continuum Escape Survey (LACES) undertaken via deep Hubble Space Telescope imaging in the SSA22 survey area reported in Fletcher et al. Using new measures of [O II] emission secured from Keck MOSFIRE spectra we re-examine, for a larger sample, earlier claims that LyC leakages may correlate with the nebular emission line ratio [O III]/[O II] as expected for density-bound H II regions. We find that a large [O III]/[O II] line ratio is indeed a necessary condition for LyC leakage, strengthening earlier claims made using smaller samples at various redshifts. However, not all LAEs with large [O III]/[O II] line ratios are leakers and leaking radiation appears not to be associated with differences in other spectral diagnostics. This suggests the detection of leaking radiation is modulated by an additional property, possibly the viewing angle for porous H II regions. We discuss our new results in the context of the striking bimodality of LAE leakers and non-leakers found in the LACES program and the implications for the sources of cosmic reionization.

AB - We discuss the rest-frame optical emission line spectra of a large (similar to 50) sample of z similar to 3.1 Ly alpha emitting galaxies (LAEs) whose physical properties suggest such sources are promising analogs of galaxies in the reionization era. Reliable Lyman continuum (LyC) escape fractions have now been determined for a large sample of such LAEs from the LymAn Continuum Escape Survey (LACES) undertaken via deep Hubble Space Telescope imaging in the SSA22 survey area reported in Fletcher et al. Using new measures of [O II] emission secured from Keck MOSFIRE spectra we re-examine, for a larger sample, earlier claims that LyC leakages may correlate with the nebular emission line ratio [O III]/[O II] as expected for density-bound H II regions. We find that a large [O III]/[O II] line ratio is indeed a necessary condition for LyC leakage, strengthening earlier claims made using smaller samples at various redshifts. However, not all LAEs with large [O III]/[O II] line ratios are leakers and leaking radiation appears not to be associated with differences in other spectral diagnostics. This suggests the detection of leaking radiation is modulated by an additional property, possibly the viewing angle for porous H II regions. We discuss our new results in the context of the striking bimodality of LAE leakers and non-leakers found in the LACES program and the implications for the sources of cosmic reionization.

KW - CENT LEAKAGE

KW - GALAXIES

KW - ULTRAVIOLET

KW - EVOLUTION

KW - EMITTERS

KW - PHOTONS

KW - COMPACT

U2 - 10.3847/1538-4357/ab6604

DO - 10.3847/1538-4357/ab6604

M3 - Journal article

VL - 889

JO - Astrophysical Journal

JF - Astrophysical Journal

SN - 0004-637X

IS - 2

M1 - 161

ER -

ID: 247168694