The spatial distribution of oxygen in the interstellar medium of galaxies is the key to understanding how efficiently metals that are synthesized in massive stars can be redistributed across a galaxy. We present here a case study in the nearby spiral galaxy NGC 1365 using 3D optical data obtained in the TYPHOON Program. We find systematic azimuthal variations of the H II region oxygen abundance imprinted on a negative radial gradient. The 0.2 dex azimuthal variations occur over a wide radial range of 0.3-0.7 R-25 and peak at the two spiral arms in NGC 1365. We show that the azimuthal variations can be explained by two physical processes: gas undergoes localized, sub-kiloparsec-scale self-enrichment when orbiting in the inter-arm region, and...
© 2018 The Author(s). We study the evolution of oxygen abundance radial gradients as a function of t...
Context. Galactic disc chemical evolution models generally ignore azimuthal surface density variatio...
Premio a la mejor tesis doctoral en Astronomía y Astrofísica del año 2017 (Sociedad Española de Astr...
The spatial distribution of oxygen in the interstellar medium of galaxies is the key to understandin...
19 pages, 13 figures. Accepted to ApJThe spatial distribution of oxygen in the interstellar medium o...
The azimuthal variation of the H II region oxygen abundance in spiral galaxies is a key observable f...
The spatial distribution of the interstellar medium oxygen abundance is the key to understanding how...
Context. The distribution of elements in galaxies forms an important diagnostic tool to characterize...
The exploration of the spatial distribution of chemical abundances in star-forming regions of galac...
The spatial distribution of metals reflects, and can be used to constrain, the processes of chemical...
Context. The distribution of chemical abundances and their variation with time are important tools ...
© 2017 International Astronomical Union. We summarize the results obtained from our suite of chemica...
Context. The distribution of chemical abundances and their variation with time are important tools f...
© 2018 The Author(s). We study the evolution of oxygen abundance radial gradients as a function of t...
Context. Galactic disc chemical evolution models generally ignore azimuthal surface density variatio...
Premio a la mejor tesis doctoral en Astronomía y Astrofísica del año 2017 (Sociedad Española de Astr...
The spatial distribution of oxygen in the interstellar medium of galaxies is the key to understandin...
19 pages, 13 figures. Accepted to ApJThe spatial distribution of oxygen in the interstellar medium o...
The azimuthal variation of the H II region oxygen abundance in spiral galaxies is a key observable f...
The spatial distribution of the interstellar medium oxygen abundance is the key to understanding how...
Context. The distribution of elements in galaxies forms an important diagnostic tool to characterize...
The exploration of the spatial distribution of chemical abundances in star-forming regions of galac...
The spatial distribution of metals reflects, and can be used to constrain, the processes of chemical...
Context. The distribution of chemical abundances and their variation with time are important tools ...
© 2017 International Astronomical Union. We summarize the results obtained from our suite of chemica...
Context. The distribution of chemical abundances and their variation with time are important tools f...
© 2018 The Author(s). We study the evolution of oxygen abundance radial gradients as a function of t...
Context. Galactic disc chemical evolution models generally ignore azimuthal surface density variatio...
Premio a la mejor tesis doctoral en Astronomía y Astrofísica del año 2017 (Sociedad Española de Astr...