Physical Properties of H II Regions in M51 from Spectroscopic Observations
Peng Wei, Hu Zou, Xu Kong, Xu Zhou, Ning Hu, Zesen Lin, Yewei Mao, Lin, Lin, Zhimin Zhou, Xiang Liu, Shuguo Ma, Lu Ma, Tuhong Zhong, Fei Dang,, Jiantao Sun, and Xinkui Lin

TL;DR
This study investigates the physical properties of H II regions in M51 using spectroscopic data, revealing gradients in extinction, metallicity, and stellar age that inform galaxy formation and interaction history.
Contribution
The paper provides detailed spectroscopic analysis of M51's H II regions, combining new observations with literature data to map physical property distributions and gradients.
Findings
M51 shows a mild radial extinction gradient.
A negative metallicity gradient supports inside-out galaxy formation.
Positive abundance gradient in the inner region suggests complex chemical evolution.
Abstract
M51 and NGC 5195 is an interacting system that can be explored in great details with ground-based telescopes. The H II regions in M51 were observed using the 2.16 m telescope of the National Astronomical Observatories of the Chinese Academy of Sciences and the 6.5 m Multiple Mirror Telescope with spatial resolution of less than pc. We obtain a total of 113 spectra across the galaxy and combine the literature data of Croxall et al. to derive a series of physical properties, including the gas-phase extinction, stellar population age, star formation rate (SFR) surface density, and oxygen abundance. The spatial distributions and radial profiles of these properties are investigated in order to study the characteristics of M51 and the clues to the formation and evolution of this galaxy. M51 presents a mild radial extinction gradient. The lower gas-phase extinction in the north…
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