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Yunyang Li

6 accepted papers

2026

E2Former-V2: On-the-Fly Equivariant Attention with Linear Activation Memory

ICML 2026poster

Equivariant Graph Neural Networks (EGNNs) have become a widely used approach for modeling 3D atomistic systems. However, mainstream architectures face critical scalability bottlenecks due to the explicit construction of geometric features or dense tensor products on \textit{every} edge. To overcome …

Cited by 0SourceScholar
2026

Elign: Equivariant Diffusion Model Alignment from Foundational Machine Learned Force Fields

ICML 2026poster

Generative models for 3D molecular conformations must respect Euclidean symmetries and concentrate probability mass on thermodynamically favorable, mechanically stable structures. However, E(3)-equivariant diffusion models often reproduce biases from semi-empirical training data rather than capturin…

Cited by 0SourceScholar
2025

E2Former: An Efficient and Equivariant Transformer with Linear-Scaling Tensor Products

NeurIPS 2025spotlight

Equivariant Graph Neural Networks (EGNNs) have demonstrated significant success in modeling microscale systems, including those in chemistry, biology and materials science. However, EGNNs face substantial computational challenges due to the high cost of constructing edge features via spherical tenso…

Cited by 0SourceScholar
2025

Efficient and Scalable Density Functional Theory Hamiltonian Prediction through Adaptive Sparsity

ICML 2025poster

Hamiltonian matrix prediction is pivotal in computational chemistry, serving as the foundation for determining a wide range of molecular properties. While SE(3) equivariant graph neural networks have achieved remarkable success in this domain, their substantial computational cost—driven by high-orde…

2025

Enhancing the Scalability and Applicability of Kohn-Sham Hamiltonians for Molecular Systems

ICLR 2025spotlight

Density Functional Theory (DFT) is a pivotal method within quantum chemistry and materials science, with its core involving the construction and solution of the Kohn-Sham Hamiltonian. Despite its importance, the application of DFT is frequently limited by the substantial computational resources requ…

Cited by 0SourcePDFScholar
2024

Long-Short-Range Message-Passing: A Physics-Informed Framework to Capture Non-Local Interaction for Scalable Molecular Dynamics Simulation

ICLR 2024poster

Computational simulation of chemical and biological systems using *ab initio* molecular dynamics has been a challenge over decades. Researchers have attempted to address the problem with machine learning and fragmentation-based methods. However, the two approaches fail to give a satisfactory descrip…