Kinetic Langevin Diffusion for Crystalline Materials Generation

Abstract

Generative modeling of crystalline materials using diffusion models presents a series of challenges: the data distribution is characterized by inherent symmetries and involves multiple modalities, with some defined on specific manifolds. Notably, the treatment of fractional coordinates representing atomic positions in the unit cell requires careful consideration, as they lie on a hypertorus. In this work, we introduce Kinetic Langevin Diffusion for Materials (KLDM), a novel diffusion model for crystalline materials generation, where the key innovation resides in the modeling of the coordinates. Instead of resorting to Riemannian diffusion on the hypertorus directly, we generalize Trivialized Diffusion Models (TDM) to account for the symmetries inherent to crystals. By coupling coordinates with auxiliary Euclidean variables representing velocities, the diffusion process is now offset to a flat space. This allows us to effectively perform diffusion on the hypertorus while providing a training objective consistent with the periodic translation symmetry of the true data distribution. We evaluate KLDM on both Crystal Structure Predic- tion (CSP) and De-novo Generation (DNG) tasks, demonstrating its competitive performance with current state-of-the-art models.

Cite

Text

Cornet et al. "Kinetic Langevin Diffusion for Crystalline Materials Generation." ICLR 2025 Workshops: AI4MAT, 2025.

Markdown

[Cornet et al. "Kinetic Langevin Diffusion for Crystalline Materials Generation." ICLR 2025 Workshops: AI4MAT, 2025.](https://mlanthology.org/iclrw/2025/cornet2025iclrw-kinetic/)

BibTeX

@inproceedings{cornet2025iclrw-kinetic,
  title     = {{Kinetic Langevin Diffusion for Crystalline Materials Generation}},
  author    = {Cornet, François R J and Bergamin, Federico and Bhowmik, Arghya and Garcia-Lastra, Juan Maria and Frellsen, Jes and Schmidt, Mikkel N.},
  booktitle = {ICLR 2025 Workshops: AI4MAT},
  year      = {2025},
  url       = {https://mlanthology.org/iclrw/2025/cornet2025iclrw-kinetic/}
}