paper

A resolved warm/dense gas Schmidt-Kennicutt relationship in a binary HyLIRG at

arXiv:1806.01951

Abstract

Hyperluminous infrared galaxies (HyLIRGs) provide crucial "long lever arm" constraints on galaxy evolution. H-ATLAS , a binary HyLIRG with at least two additional luminous companion galaxies, is thus an optimal test-ground for studies of star formation and galaxy evolution during "cosmic noon". We have used ALMA to obtain resolved imaging and kinematics of atomic and molecular emission lines, and rest-frame to GHz continuum emission, for the known luminous component galaxies in H-ATLAS : W, T, M, C. All four component galaxies are spatially ( or kpc) resolved in CO J:7-6, [C] 2-1, HO and the millimetre (mm) to sub-mm continuum. Rotation-dominated gas kinematics is confirmed in W and T. The significant extension to component T, in gas and continuum, along its kinematic minor axis, is attributable to its lensing magnification. Spatially resolved sub-mm spectral energy distributions reveal that component W is well fit with greybody emission from dust at a single temperature over the full extent of the galaxy, despite it containing a powerful AGN, while component T requires an additional component of hotter nuclear dust and additional sources of emission in the mm. We confirm that [C] 2-1 can be used as a rough tracer of warm/dense molecular gas in extreme systems, though the [C] 2-1/CO luminosity ratio increases sub-linearly. We obtain an exquisite and unprecedented resolved (-kpc-scale) "warm/dense molecular gas" Schmidt-Kennicutt (SK) relationship for components W and T. Gas exhaustion times for all apertures in W (T) are Gyr (Gyr). Both W and T follow a resolved "warm/dense gas" SK relationship with power law , significantly steeper than the found previously via "cold" molecular gas in nearby "normal" star-forming galaxies.