English

Correlations between H$\alpha$ Equivalent Width and Galaxy Properties at $z = 0.47$: Physical or Selection-driven?

Astrophysics of Galaxies 2021-04-21 v1

Abstract

The Hα\alpha equivalent width (EW) is an observational proxy for specific star formation rate (sSFR) and a tracer of episodic star-formation activity. Previous assessments show that EW strongly anti-correlates with stellar mass as M0.25M^{-0.25} similar to the sSFR -- stellar mass relation. However, such a correlation may be driven/formed by selection effects. In this study, we investigate how Hα\alpha EWs correlate with galaxy properties and how selection biases could alter such correlations using a z=0.47z = 0.47 narrowband-selected sample of 1572 Hα\alpha emitters from the Lyα\alpha Galaxies in the Epoch of Reionization (LAGER) survey. The sample covers 3 deg2^2 of COSMOS and 1.1×1051.1\times10^5 cMpc3^3. We assume an intrinsic EW distribution to form mock samples of Hα\alpha emitters (HAEs) and propagate the selection criteria to match observations, giving us control on how selection biases can affect the underlying results. We find EW intrinsically correlates with stellar mass as W0M0.16±0.03W_0 \propto M^{-0.16\pm0.03} and decreases by a factor of 3\sim 3 from 10710^{7} to 101010^{10} M_\odot. We find low-mass HAEs to be 320\sim 320 times more likely to have rest-frame EW>200 > 200\AA compared to high-mass HAEs. Combining the intrinsic EW -- stellar mass correlation with an observed SMF correctly reproduces the observed Hα\alpha LF, while not correcting for selection effects underestimates the number of bright HAEs. This suggests that the intrinsic EW -- stellar mass correlation is physically significant and reproduces three statistical distributions of galaxy populations (LF, SMF, EW distribution). At lower masses, we find there are more high-EW outliers compared to high masses, even after taking into account selection effects. Our results suggest that high sSFR outliers indicative of bursty SF activity are intrinsically more prevalent in low-mass HAEs and not a byproduct of selection effects.

Cite

@article{arxiv.2103.10959,
  title  = {Correlations between H$\alpha$ Equivalent Width and Galaxy Properties at $z = 0.47$: Physical or Selection-driven?},
  author = {Ali Ahmad Khostovan and Sangeeta Malhotra and James E. Rhoads and Santosh Harish and Chunyan Jiang and Junxian Wang and Isak Wold and Zhen-Ya Zheng and L. Felipe Barrientos and Alicia Coughlin and Weida Hu and Leopoldo Infante and Lucia A. Perez and John Pharo and Francisco Valdes and Alistair R. Walker},
  journal= {arXiv preprint arXiv:2103.10959},
  year   = {2021}
}

Comments

21 Pages, 13 Figures, 2 Tables, accepted to MNRAS

R2 v1 2026-06-24T00:21:55.153Z