RT Journal Article T1 The Lockman–SpReSO project: galactic flows in a sample of far-infrared galaxies A1 González-Otero, Mauro A1 Padilla-Torres, Carmen P. A1 González-Serrano, José Ignacio A1 Cepa, Jordi A1 Pérez García, Ana María A1 Jesús González, J. A1 Benítez, Erika A1 Bongiovanni, Ángel A1 Gallego Maestro, Jesús A1 Lara López, Maritza Arlene A1 Navarro Martínez, Rocío AB ContextThe Lockman–SpReSO project is an optical spectroscopic survey of 956 far-infrared (FIR) objects within the Lockman Hole field limited by magnitude R_(C)(AB) < 24.5. Fe II and Mg II absorption lines have been detected in 21 out of 456 objects with a determined spectroscopic redshift in the catalogue. The redshifts of these objects are in the range 0.5 ≲ z ≲ 1.44.Aims. The aim of this study is to investigate material ejection from star-forming regions and material infall into galaxies by analysing the Fe II and Mg II absorption lines. Additionally, we explore whether the correlations found in previous studies between these galactic wind velocities, line equivalent widths (EWs), and galaxy properties such as stellar mass (M_(*)), star formation rate (SFR), and specific star formation rate (sSFR) are valid for a sample with FIR-selected objects. The objects analysed span an M_(*) range of 9.89 < log(M_(*)/M_(⊙)) < 11.50 and an SFR range of 1.01 < log(SFR) < 2.70.Methods. We performed measurements of the Mg IIλλ2796, 2803, Mg Iλ2852, Fe IIλλ2374, 82, Fe IIλλ2586, 2600, and Fe IIλ2344 spectral lines present in the spectra of the selected sample to determine the EW and velocity of the flows observed in the star-forming galaxies. Subsequently, we conducted 107 bootstrap simulations using the Spearman’s rank correlation coefficient (ρs) to explore correlations with galaxy properties. Furthermore, we calculated the covering factor, gas density, and optical depth for the measured Fe II doublets.Results. Our analysis reveals strong correlations between the EW of Mg II lines and both M_(*) (ρ_(s) = 0.43, 4.5σ) and SFR (ρ_(s) = 0.42, 4.4σ). For the Fe II lines, we observed strong correlations between the EW and SFR (ρs ∼ 0.65, > 3.9σ), with a weaker correlation for M_(*) (ρ_(s) ∼ 0.35, > 1.9σ). No notable correlations were found between velocity measurements of the Mg II line and M_(*), SFR, or sSFR of the objects (ρ_(s) ∼ 0.1). However, a strong negative correlation was found between the velocity of the Fe II lines and the SFR of the galaxies (ρ_(s) ∼ −0.45, ∼3σ). Our results align with those of previous studies, although only FIR-selected objects are investigated here. Finally, we detect a candidate ‘loitering outflow’, a recently discovered subtype of the iron low-ionisation broad absorption line (FeLoBAL) quasars, at a redshift of z = 1.4399, exhibiting emission in C III] and low line velocities (|v|≲200 km s^(−1)). PB EDP SCIENCES SN 0004-6361 YR 2024 FD 2024 LK https://hdl.handle.net/20.500.14352/130905 UL https://hdl.handle.net/20.500.14352/130905 LA eng NO González-Otero, M., Padilla-Torres, C. P., González-Serrano, J. I., Cepa, J., García, A. M. P., González, J. J., ... & Martínez, R. N. (2024). The Lockman–SpReSO project-Galactic flows in a sample of far-infrared galaxies. Astronomy & Astrophysics, 684, A31. NO Artículo firmado por 24 autores.© The Authors 2024.IN119123;2018/30/E/ST9/00208;IN102023 NO Ministerio de Economia y Competitividad (España) NO Ministerio de Ciencia e Innovación (España) NO Agencia Estatal de Investigación (España) NO European Commission NO Universidad Nacional Autónoma de México NO National Science Centre (Poland) DS Docta Complutense RD 19 mar 2026