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Spatially resolved star formation and dust attenuation in Mrk 848: Comparison of the integral field spectra and the UV-to-IR SED

2018/01/15 by F. -T. Yuan, Fang-Ting Yuan, M. Argudo-Fernandez +13 · 1 citation
Physics and Astronomy · #Astronomy and Astrophysical Research #Astrophysics and Star Formation Studies #Attenuation #Balmer series #Extinction (optical mineralogy) #Galaxies: Formation, Evolution, Phenomena #Galaxy #Infrared #Photometry (optics) #Spectral energy distribution #Spectral slope #Star formation #Stars #astro-ph.GA

paper · pdf · doi:10.1051/0004-6361/201731865

published as A&A 613, A13 (2018) · 16 pages, 16 figures, A&A accepted

arxiv created 2018/01/15 · openalex publication_date 2018/01/18 · openalex created_date 2018/01/26 · arxiv updated 2018/05/16 · openalex updated_date 2026/08/05

Abstract

We investigate the star formation history and the dust attenuation in the galaxy merger Mrk 848. Thanks to the multiwavelength photometry from the ultraviolet (UV) to the infrared (IR), and MaNGA’s integral field spectroscopy, we are able to study this merger in a detailed way. We divide the whole merger into the core and tail regions, and fit both the optical spectrum and the multi-band spectral energy distribution (SED) to models to obtain the star formation properties for each region respectively. We find that the color excess of stars in the galaxy E(B-V) s SED measured with the multi-band SED fitting is consistent with that estimated both from the infrared excess (the ratio of IR to UV flux) and from the slope of the UV continuum. Furthermore, the reliability of the E(B-V) s SED is examined with a set of mock SEDs, showing that the dust attenuation of the stars can be well constrained by the UV-to-IR broadband SED fitting. The dust attenuation obtained from optical continuum E(B-V) s spec is only about half of E(B-V) s SED . The ratio of the E(B-V) s spec to the E(B-V) g obtained from the Balmer decrement is consistent with the local value (around 0.5). The difference between the results from the UV-to-IR data and the optical data is consistent with the picture that younger stellar populations are attenuated by an extra dust component from the birth clouds compared to older stellar populations which are only attenuated by the diffuse dust. Both with the UV-to-IR SED fitting and the spectral fitting, we find that there is a starburst younger than 100 Myr in one of the two core regions, consistent with the scenario that the interaction-induced gas inflow can enhance the star formation in the center of galaxies.

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