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From the 1 of 9 linked papers with an AI index.

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9 papers

hep-lat2026

LQCDMaster: Agentic Scientific Computing for Lattice Quantum Chromodynamics Research

Haofei Gao, Tingjia Miao, Wenkai Jin +12

LQCDMaster is an AI-driven scientific computing agent that translates natural‑language lattice QCD research tasks into fully executable PyQUDA workflows, automating code generation…

hep-lat2026

Baryon Light-Cone Distribution Amplitudes from Lattice QCD: Formalism, Renormalization, Extrapolation, and Matching

Mu-Hua Zhang, Haoyang Bai, Min-Huan Chu +11

Baryon light-cone distribution amplitudes (LCDAs) are inherently multidimensional objects parametrized by two independent longitudinal momentum fractions, making their first-princi…

hep-lat2026

Complete Access to Leading-Twist -Baryon Light-Cone Distribution Amplitudes from Lattice QCD

Mu-Hua Zhang, Haoyang Bai, Min-Huan Chu +11

We report the first complete lattice-QCD determination of the leading-twist light-cone distribution amplitudes (LCDAs) of the baryon, obtained as full two-dimensional function…

hep-lat2026

Hybrid renormalization in lattice calculation of baryon LCDAs

Mu-Hua Zhang

At the 2025 International Conference on the Structure of Baryons (Baryons 2025), I presented our recent progress in lattice calculations of baryon light-cone distribution amplitude…

hep-lat2026

Continuum-Limit HQET LCDAs from Lattice QCD for Tightening B Decay Uncertainties

Xue-Ying Han, Hao-Fei Gao, Jun Hua +15

Heavy meson HQET light-cone distribution amplitudes (LCDAs) are critical for precision predictions of meson weak decays, but currently are one of dominant theoretical uncertain…

cs.LG2026

PRL-Bench: A Comprehensive Benchmark Evaluating LLMs' Capabilities in Frontier Physics Research

Tingjia Miao, Wenkai Jin, Muhua Zhang +19

The paradigm of agentic science requires AI systems to conduct robust reasoning and engage in long-horizon, autonomous exploration. However, current scientific benchmarks remain co…