AIIC AI Intelligence Centre

SOURCE-LINKED INTELLIGENCE

Symmetry-aware super-resolution of crystal orientation maps via invariant latent-space learning

arXiv · AI, language, vision and robotics · article · Sep 9, 2026 · UTC

Crystal-orientation maps are physical fields defined only up to crystal symmetry; electron backscatter diffraction (EBSD) resolves them experimentally, but acquisition-time constraints limit spatial resolution. Unlike conventional images, EBSD data lie on the quotient space $\mathrm{SO}(3)/G$, where $G$ is the crystal-symmetry group. Standard Euclidean interpolation can therefore mix symmetry-equivalent representations and blur grain boundaries. We introduce the Symmetry-Group-Aware Super-Resolution Attention Network (SG-SRAN), which incorporates crystal symmetry and boundary preservation by d

Read original source ↗ Open in workspace

recordType
paper
region
Global

Evidence & attribution

First collected: 2026-09-20T19:12:12.556Z. This is not the publication date.