Papers › Capturing Graphs with Hypo-Elliptic Diffusions

Capturing Graphs with Hypo-Elliptic Diffusions

27 May 2022arXiv:2205.14092archive 2025-07-28

Csaba Toth, Darrick Lee, Celia Hacker, Harald Oberhauser

Convolutional layers within graph neural networks operate by aggregating information about local neighbourhood structures; one common way to encode such substructures is through random walks. The distribution of these random walks evolves according to a diffusion equation defined using the graph Laplacian. We extend this approach by leveraging classic mathematical results about hypo-elliptic diffusions. This results in a novel tensor-valued graph operator, which we call the hypo-elliptic graph Laplacian. We provide theoretical guarantees and efficient low-rank approximation algorithms. In particular, this gives a structured approach to capture long-range dependencies on graphs that is robust to pooling. Besides the attractive theoretical properties, our experiments show that this method competes with graph transformers on datasets requiring long-range reasoning but scales only linearly in the number of edges as opposed to quadratically in nodes.

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graph_attn_prob tgcsaba/graph2tens/nn_ops/algorithms.py official repository unverified Apache-2.0 (permissive) · 4fe9b89e21b38de9 · report
graph_sig_attn_network tgcsaba/graph2tens/nn_ops/algorithms.py official repository unverified Apache-2.0 (permissive) · deaa0521dd147817 · report
graph_sig_network tgcsaba/graph2tens/nn_ops/algorithms.py official repository unverified Apache-2.0 (permissive) · c21ef96cac760d1b · report

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