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physics.comp-ph2024
Validating Automated Resonance Evaluation with Synthetic Data
Oleksii Zivenko, Noah A. W. Walton, William Fritsch +5
The integrity and precision of nuclear data are crucial for a broad spectrum of applications, from national security and nuclear reactor design to medical diagnostics, where the as…
physics.comp-ph2024
Incorrect Resonance Escape Probability in Monte Carlo Codes due to the Threshold Approximation of Temperature-Dependent Scattering
Gabriel Lentchner, William Fritsch, Robert Crowder +5
Monte Carlo-transport codes are designed to simulate the complex neutron transport physics associated with nuclear systems. These codes are tasked with simulating phenomena such as…
physics.comp-ph2024
Automated Resonance Identification in Nuclear Data Evaluation
Noah A. W. Walton, Oleksii Zivenko, William Fritsch +4
Global and national efforts to deliver high-quality nuclear data to users have a broad impact across applications such as national security, reactor operation, basic science, medic…