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Argonne Leadership Computing Facility

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    The ALCF provides users with access to supercomputing resources that are significantly more powerful than systems typically used for open scientific research.

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    The Argonne Leadership Computing Facility enables breakthroughs in science and engineering by providing supercomputing resources and expertise to the research community.

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Resilient Execution of Distributed X-Ray Image Analysis Workflows

Publications Frontiers in High Performance Computing

Machine Learning-Driven Conservative-to-Primitive Conversion in Hybrid Piecewise Polytropic and Tabulated Equations of State

Publications Symmetry

Waveform Modelling for the Laser Interferometer Space Antenna

Publications Living Reviews in Relativity

Enabling End-to-End Secure Federated Learning in Biomedical Research on Heterogeneous Computing Environments with APPFLx

Publications Computational and Structural Biotechnology Journal

Multiscale Light-Matter Dynamics in Quantum Materials: From Electrons to Topological Superlattices

Publications SC '25: Proceedings of the International Conference for High Performance Computing, Networking, Storage and Analysis

Conformational Dynamics and Catalytic Backups in a Hyper-Thermostable Engineered Archaeal Protein Tyrosine Phosphatase

Publications JACS Au

Magnetically Driven Neutron-rich Ejecta Unleashed: Global 3D Neutrino–General Relativistic Magnetohydrodynamic Simulations of Collapsars Probe the Conditions for r-process Nucleosynthesis

Publications The Astrophysical Journal Letters

Super-Resolution Stimulated X-Ray Raman Spectroscopy

Publications Nature

Enabling Multireference Calculations on Multimetallic Systems with Graphic Processing Units

Publications Journal of Chemical Theory and Computation

Connecting GRBs from Binary Neutron Star Mergers to Nuclear Properties of Neutron Stars

Publications Physical Review D

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