Quantifying Symmetry: Transformation Information for Planetary Nebulae and Supernova Remnants
arXiv:2601.07913 · doi:10.1088/1538-3873/ae7692
Abstract
We present a quantitative symmetry-identification pipeline for astrophysical images based on Transformation Information (TI), an information measure of self-similarity under geometric transformations. TI is expressed as a Kullback-Leibler (cross-entropy) divergence between an image and its rotated or reflected counterpart on the overlapping domain. By scanning rotation angles and reflection axes, we obtain TI curves whose local minima identify symmetry operations. We validate the method on a wind-rose pattern and then apply it to planetary nebulae, where the recovered axes trace bipolar and multipolar lobes consistent with morphology-based classifications. Applying TI to supernova remnants yields estimate axes associated with protrusions, rims, and substructure. To emphasize global morphology, we introduce a thresholded two-level variant that compares binary silhouettes and can reveal outline-driven symmetries. Finally, we quantify symmetry using a minima prominence-to-width score and show that this compact descriptor separates Type Ia and core-collapse remnants into distinct populations for an X-ray sample. TI provides a non-parametric, reproducible framework for symmetry identification, classification and population studies.
Accepted for publication in PASP. Code available at: https://github.com/AmirGoshenMichaelis/symmetries_snr
References in corpus (22)
- SciPy 1.0--Fundamental Algorithms for Scientific Computing in Python
- Array Programming with NumPy
- Supernova remnants: the X-ray perspective
- Spectropolarimetry of Supernovae
- Using the X-ray Morphologies of Young Supernova Remnants to Constrain Explosion Type, Ejecta Distribution, and Chemical Mixing
- Typing Supernova Remnants Using X-ray Line Emission Morphologies
- The Symmetry, Color, and Morphology of Galaxies
- Unraveling the Helix Nebula: Its Structure and Knots
- The infancy of core-collapse supernova remnants
- Rings and arcs around evolved stars. II. The Carbon Star AFGL 3068 and the Planetary Nebulae NGC 6543, NGC 7009 and NGC 7027
- Bubbles in Planetary Nebulae and Clusters of Galaxies: Jet Bending
- Supernovae in 2023 (review): possible breakthroughs by late observations
- Constraining Explosion Type of Young Supernova Remnants Using 24 Micron Emission Morphology
- A detailed look at the thermal and non-thermal X-ray emission from the Vela supernova remnant with SRG/eROSITA
- Jet - counter-jet asymmetry in the jittering jets explosion mechanism of supernovae
- Comparing jet-shaped point symmetry in cluster cooling flows and supernovae
- Tracing the ejecta structure of SN 1987A: Insights and diagnostics from 3D MHD simulations
- Simulating the shaping of point-symmetric structures in the jittering jets explosion mechanism
- Complex morphology and precession indicators of AGN jets in LoTSS DR2
- A Chandra X-ray Study of Supernova Remnant N63A in the Large Magellanic Cloud
- The main jet axis of the W49B supernova remnant
- Morphological Image Similarity Search on the ALMA Science Archive Query Interface Using Deep Unsupervised Contrastive Representation Learning