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Low- and high-redshift H II starburst galaxies obey different luminosity-velocity dispersion relations
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Low- and high-redshift H II starburst galaxies obey different luminosity-velocity dispersion relations
abstract
To determine whether or not H II starburst galaxies (H IIG) are standardizable candles, we study the correlation between the H$\beta$ luminosity ($L$) and the velocity dispersion ($\sigma$) of the ionized gas from H IIG measurements by simultaneously constraining the $L-\sigma$ relation parameters and the cosmological model parameters. We investigate six flat and nonflat relativistic dark energy cosmological models. We find that low-redshift and high-redshift H IIG data subsets are standardizable but obey different $L-\sigma$ relations. Current H IIG data are too sparse and too non-uniformly distributed in redshift to allow for a determination of why the samples follow different relations, but it could be caused by the high-redshift sample containing relatively fewer intrinsically dimmer sources (Malmquist bias) or it could be a consequence of H IIG evolution. Until this issue is better understood, H IIG data cosmological constraints must be treated with caution.
Forward citations
Cited by 2 Pith papers
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Charting the expansion of the Universe from z$\sim$0 to z$\sim$14 with HII galaxies
Using the HII-galaxy luminosity–velocity-dispersion relation, the authors extend the Hubble diagram to z≈14 and derive h=0.725±0.040, Ωm=0.308, and w consistent with ΛCDM.
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Redshift Evolution of the HII Galaxy $L$-$\sigma$ Relation: Gaussian Process Analysis and Cosmological Implications
Bayesian model comparison using GP regression on Pantheon+ SNIa distances finds a logarithmic redshift correction to the HIIG L-σ relation statistically preferred when intrinsic dispersion is modeled, though evidence ...
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