English

Multiresolution and Hierarchical Analysis of Astronomical Spectroscopic Cubes using 3D Discrete Wavelet Transform

Computer Vision and Pattern Recognition 2017-11-28 v2

Abstract

The intrinsically hierarchical and blended structure of interstellar molecular clouds, plus the always increasing resolution of astronomical instruments, demand advanced and automated pattern recognition techniques for identifying and connecting source components in spectroscopic cubes. We extend the work done in multiresolution analysis using Wavelets for astronomical 2D images to 3D spectroscopic cubes, combining the results with the Dendrograms approach to offer a hierarchical representation of connections between sources at different scale levels. We test our approach in real data from the ALMA observatory, exploring different Wavelet families and assessing the main parameter for source identification (i.e., RMS) at each level. Our approach shows that is feasible to perform multiresolution analysis for the spatial and frequency domains simultaneously rather than analyzing each spectral channel independently.

Keywords

Cite

@article{arxiv.1711.06663,
  title  = {Multiresolution and Hierarchical Analysis of Astronomical Spectroscopic Cubes using 3D Discrete Wavelet Transform},
  author = {Martín Villanueva and Mauricio Araya},
  journal= {arXiv preprint arXiv:1711.06663},
  year   = {2017}
}

Comments

Presented at the 8th International Conference on Pattern Recognition Systems, Madrid-Spain, 2017

R2 v1 2026-06-22T22:49:43.261Z