Tracking down the origin of superbubbles and supergiant shells in the Magellanic Clouds with Minkowski tensor analysis
arXiv:2108.11641 · doi:10.1051/0004-6361/202040153
Abstract
We develop an automatic bubble-recognition routine based on Minkowski functionals (MF) and tensors (MT) to detect bubble-like interstellar structures in optical emission line images. Minkowski functionals and MT are powerful mathematical tools for parameterizing the shapes of bodies. Using the papaya2-library, we created maps of the desired MF or MT of structures at a given window size. We used maps of the irreducible MT , which is sensitive to elongation, to find filamentary regions in H, [SII], and [OIII] images of the Magellanic Cloud Emission Line Survey (MCELS). Using the phase of , we were able to draw lines perpendicular to each filament and thus obtain line-density maps. This allowed us to find the center of a bubble-like structure and to detect structures at different window sizes. The detected bubbles in all bands are spatially correlated to the distribution of massive stars, showing that we indeed detect interstellar bubbles without large spatial bias. Eighteen out of 59 supernova remnants in the Large Magellanic Cloud (LMC) and 13 out of 20 superbubbles are detected in at least one wavelength. The lack of detection is mostly due to surrounding emission that disturbs the detection, a too small size, or the lack of a (circular) counterpart in our emission line images. In line-density maps at larger scales, maxima can be found in regions with high star formation in the past, often inside supergiant shells (SGS). In SGS LMC 2, there is a maximum west of the shell where a collision of large gas clouds is thought to have occurred. In the Small Magellanic Cloud (SMC), bubble detection is impaired by the more complex projected structure of the galaxy. Line maps at large scales show large filaments in the SMC in a north-south direction, especially in the [SII] image. The origin of these filaments is unknown.
19 pages, 27 figures. Accepted for publication in Astronomy & Astrophysics
References in corpus (13)
- A distance to the Large Magellanic Cloud that is precise to one per cent
- Spitzer SAGE Infrared Photometry of Massive Stars in the Large Magellanic Cloud
- Clustering of Local Group distances: publication bias or correlated measurements? III. The Small Magellanic Cloud
- Limits on Primordial Non-Gaussianity from Minkowski Functionals of the WMAP Temperature Anisotropies
- Appearance of the Single Gyroid Network Phase in Nuclear Pasta Matter
- The Milky Way Project: Leveraging Citizen Science and Machine Learning to Detect Interstellar Bubbles
- The Milky Way Project Second Data Release: Bubbles and Bow Shocks
- Limits on Second-Order Non-Gaussianity from Minkowski Functionals of WMAP Data
- XMM-Newton study of 30 Dor C and a newly identified MCSNR J0536-6913 in the Large Magellanic Cloud
- XMM-Newton view of the N 206 superbubble in the Large Magellanic Cloud
- Application of Convolutional Neural Networks to Identify Stellar Feedback Bubbles in CO Emission
- The clustering of galaxies in the SDSS-III Baryon Oscillation Spectroscopic Survey: higher-order correlations revealed by germ-grain Minkowski Functionals
- papaya2: 2D Irreducible Minkowski Tensor computation