Probing the full CO spectral line energy distribution (SLED) in the nuclear region of a quasar-starburst system at $z=6.003$
Jianan Li, Ran Wang, Dominik Riechers, Fabian Walter, Roberto Decarli,, Bram P. Venamans, Roberto Neri, Yali Shao, Xiaohui Fan, Yu Gao, Chris L., carilli, Alain Omont, Pierre Cox, Karl M. Menten, Jeff Wagg, Frank Bertoldi, and Desika Narayanan

TL;DR
This study presents detailed ALMA and NOEMA observations of multiple CO, water, and OH+ lines in a $z=6.003$ quasar, revealing a highly excited, warm, and dense molecular gas environment influenced by various energetic processes.
Contribution
First detailed CO SLED analysis at $z=6.003$ using multi-instrument data, revealing complex gas conditions and excitation mechanisms in a high-redshift quasar-starburst system.
Findings
CO SLED best fit by a two-component model with warm, dense gas
High CO excitation similar to other high-redshift quasars
Evidence of additional heating mechanisms like shocks, cosmic rays, and X-rays
Abstract
We report Atacama Large Millimeter/submillimeter Array (ALMA) observations of CO , , and and NOrthern Extended Millimeter Array (NOEMA) observations of CO , , and towards the quasar SDSS J231038.88+185519.7, aiming to probe the physical conditions of the molecular gas content of this source. We present the best sampled CO spectral line energy distribution (SLED) at , and analyzed it with the radiative transfer code MOLPOP-CEP. Fitting the CO SLED to a one-component model indicates a kinetic temperature , molecular gas density )=4.75, and CO column density , although a two-component model better fits the data. In either case, the CO SLED is dominated by a "warm" and…
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