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Search indexed NASA NTRS and DOE OSTI research on propulsion, heat transfer, battery materials and energy systems. Follow report and document links to the original sources.
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Two-qubit Quantum Logic Gates for Neutral Atoms Based on the Spin-Flip Blockade.
Abstract not provided.
AlGaN High Electron Mobility Transistor for High Temperature Logic.
Abstract not provided.
The Asynchronous Ballistic Approach to Reversible Superconducting Logic.
Abstract not provided.
Logical Majorana Fermions for Fault-Tolerant Quantum Simulation.
Abstract not provided.
Software and Firmware-logic Design for the PIP-II Machine Protection System Mode and Configuration Control at Fermilab
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BUILD: Binary Understanding and Integration Logic for Dependencies (Final Report)
Increasingly diverse mission needs, the emergence of AI and cloud, and increasing hardware diversity are driving HPC software to be more complex. Modern codes are built from hundreds of small, complex components, and much of the software development process involves integrating these components rather than developing new components from scratch. The goal of the BUILD project was to ease the task of software integration for developers across LLNL’s programs. The project focused on (1) modeling software compatibility, (2) modeling ABI compatibility with binary analysis, (3) developing solver techniques to reason about compatibility, and (4) developing AI/ML models to fill gaps in our understanding of software compatibility. The project has developed several key technologies that help developers—by accelerating development workflows, removing the need for rebuilds, and enabling faster, automatic, and less error-prone code sharing. These technologies are used in LLNL codes and will be ready for the new El Capitan Exascale system in Livermore Computing. Many of these technologies have been hardened and integrated with LLNL’s Spack package manager, and they are already in use by production code teams. Results of BUILD have laid the groundwork for future advances in software integration—the ML and binary modification techniques developed in this project still need to be operationalized but have great potential to further speed up software integration.
Exploration of a novel entangling quantum logic gate in the presence of noise and laboratory constraints
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Logical Majorana Fermions for Fault-Tolerant Quantum Simulation
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Probing logical error models with gate set tomography
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Optimal Membrane Cascade Design for Critical Mineral Recovery through Logic-based Superstructure Optimization
In this work, we extend the superstructure model proposed by Wamble et al. (2022) that considers feed input locations, recycling strategies, split fractions, stage numbers, and membrane area. We include the total number of stages as a decision variable, which might be particularly useful when there is cost as- sociated with adding additional stages. We propose a Generalized Disjunctive Programming (GDP) superstructure model that integrates all the design variables of the system. We also investigate the scalability of the model by varying the number of stages and the number of finite elements per stage to determine the impact on recovery and solution time.
Logical Approach to Tritium Vacuum Pump Selection
Introduction Vacuum pumps are essential to the operation of tritium purification and recovery processes. However, not all vacuum pumps sold meet the requirements for tritium service. Manufacturers routinely do not fully appreciate the hazards associated with tritium, or the complex materials interactions. Therefore, a decision tree was established detailing which pump types, and certain manufacturers, are either fully compatible, limited use, or to avoid at all costs to establish a more structured and uniform approach to tritium vacuum pumps.
Logically reversible rotary element for asynchronous ballistic reversible computing
Poster presentation submitted to the applied superconductivity conference 2024 to be held in Salt Lake City, Utah.
Quantum Enhanced Josephson Junction Field-Effect Transistors for Logic Applications
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Integrated Photonics Characterization And Design For Optical Quantum Logic
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Emergent Non-Markovian Dynamics in Logical Qubit Dynamics
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Emergent Non-Markovianity in Logical Qubit Dynamics
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Emergent Non-Markovian Dynamics in Logical Qubit Systems
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