HCN $J$=4-3, HNC $J$=1-0, $\mathrm{H^{13}CN}$ $J$=1-0, and $\mathrm{HC_3N}$ $J$=10-9 Maps of Galactic Center Region I: Spatially-Resolved Measurements of Physical Conditions and Chemical Composition
Kunihiko Tanaka, Makoto Nagai, Kazuhisa Kamegai, Takahiro Iino. and, Takeshi Sakai

TL;DR
This study provides detailed, spatially-resolved maps of molecular gas conditions and composition in the Galactic Center, using advanced Bayesian methods to analyze multiple molecular lines and identify shock-related chemical regimes.
Contribution
It introduces a hierarchical Bayesian inference method for analyzing molecular line data, improving parameter estimation accuracy in complex Galactic Center environments.
Findings
Typical gas kinetic temperature ~63 K and density ~2.5 x 10^4 cm^-3
High-temperature regions are often associated with shocked clouds
Two distinct shock regimes influence molecular chemistry
Abstract
This {\it supplement} paper presents the maps of HCN =4-3, HNC =1-0, =1-0, and HCN =10-9 for the Galactic central molecular zone (CMZ), which have been obtained using the Atacama Submillimeter Telescope Experiment and Nobeyama Radio Observatory 45-m telescope. Three-dimensional maps (2-D in space and 1-D in velocity) of the gas kinetic temperature (), hydrogen volume density (), and fractional abundances of eight molecules (HCN, HNC, , HCO, , SiO, CS, and ) have been constructed from our and archival data. We have developed a method with hierarchical Bayesian inference for this analysis, which has successfully suppressed the artificial correlations among the parameters created by systematic errors due to the deficiency in the simple one-zone excitation analysis and…
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