MASSIV: Mass Assembly Survey with SINFONI in VVDS. V. The major merger rate of star-forming galaxies at 0.9 < z < 1.8 from IFS-based close pairs
C. L\'opez-Sanjuan, O. Le F\`evre, L. A. M. Tasca, B. Epinat, P., Amram, T. Contini, B. Garilli, M. Kissler-Patig, J. Moultaka, L. Paioro, V., Perret, J. Queyrel, L. Tresse, D. Vergani, and C. Divoy

TL;DR
This study measures the rate of major mergers among star-forming galaxies between redshifts 0.9 and 1.8 using integral field spectroscopy, revealing a significant merger contribution to galaxy evolution.
Contribution
It provides the first IFS-based measurements of gas-rich major merger rates at z ~ 1.5 and models their impact on galaxy evolution.
Findings
Gas-rich major merger fraction ~21% at z ~ 1.2-1.5
Merger rate increases as (1+z)^3.95 up to z=1.5
Approximately 35% of star-forming galaxies experienced a major merger since z~1.5
Abstract
We aim to measure the major merger rate of star-forming galaxies at 0.9 < z <1.8, using close pairs identified from integral field spectroscopy (IFS). We use the velocity field maps obtained with SINFONI/VLT on the MASSIV sample, selected from the star-forming population in the VVDS. We identify physical pairs of galaxies from the measurement of the relative velocity and the projected separation (r_p) of the galaxies in the pair. Using the well constrained selection function of the MASSIV sample we derive the gas-rich major merger fraction (luminosity ratio mu = L_2/L_1 >= 1/4), and, using merger time scales from cosmological simulations, the gas-rich major merger rate at a mean redshift up to z = 1.54. We find a high gas-rich major merger fraction of 20.8+15.2-6.8 %, 20.1+8.0-5.1 % and 22.0+13.7-7.3 % for close pairs with r_p <= 20h^-1 kpc in redshift ranges z = [0.94, 1.06], [1.2,…
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