activity
20242026
collaborators

9 papers

cs.CL2026

Accelerating Scientific Research with Gemini: Case Studies and Common Techniques

David P. Woodruff, Vincent Cohen-Addad, Lalit Jain +33

Recent advances in large language models (LLMs) have opened new avenues for accelerating scientific research. While models are increasingly capable of assisting with routine tasks,…

cs.AI2026

Solving an Open Problem in Theoretical Physics using AI-Assisted Discovery

Michael P. Brenner, Vincent Cohen-Addad, David Woodruff

This paper demonstrates that artificial intelligence can accelerate mathematical discovery by autonomously solving an open problem in theoretical physics. We present a neuro-symbol…

cs.LG2026

CMT-Benchmark: A Benchmark for Condensed Matter Theory Built by Expert Researchers

Haining Pan, James V. Roggeveen, Erez Berg +16

Large language models (LLMs) have shown remarkable progress in coding and math problem-solving, but evaluation on advanced research-level problems in hard sciences remains scarce.…

physics.flu-dyn2026

Learning constitutive models and rheology from partial flow measurements

Alp M. Sunol, James V. Roggeveen, Mohammed G. Alhashim +2

Constitutive laws relate fluid stress to deformation and underpin predictions of non-Newtonian behavior in industrial and biological fluids. Standard characterization relies on mea…

cs.LG2025

Accelerating scientific discovery with the common task framework

J. Nathan Kutz, Peter Battaglia, Michael Brenner +12

Machine learning (ML) and artificial intelligence (AI) algorithms are transforming and empowering the characterization and control of dynamic systems in the engineering, physical,…

math.NA2025

Meshless solutions of PDE inverse problems on irregular geometries

James V. Roggeveen, Michael P. Brenner

Solving inverse and optimization problems over solutions of nonlinear partial differential equations (PDEs) on complex spatial domains is a long-standing challenge. Here we introdu…