DOE OSTI · 3674499
Delivery Ring Spill Characterization and Impulse Study
Abstract
High-intensity particle physics experiments require uniform beam extraction to prevent instantaneous rate spikes from overwhelming detector systems. By analyzing accelerator parameters and extracted beam dynamics, we directly inform spill regulation systems that make real-time adjustments to minimize non-uniformity. This Department of Energy Visiting Faculty Program project transitioned from characterizing Main Injector half-integer slow extraction for SpinQuest to Delivery Ring third-integer slow extraction for Mu2e. Working alongside the Fast Adaptive Neural Control (FANC) group, we developed an automated pipeline that aligns asynchronous instrument channels, embeds quality metrics, and isolates clean spill populations. Analyzing baseline spills alongside a dedicated quadrupole impulse study allowed us to quantify noise structures while mapping time-varying beam response and transit-delay dynamics. These empirical measurements directly ground digital twin models, supporting FANC’s deployment of real-time, FPGA-based neural network controllers in the Mu2e Spill Regulation System.
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Dolen, James William [Purdue U., West Lafayette] (ORCID:0000000311413823), Prescott, Matt [Purdue U., West Lafayette], Osborn, Tommy [Purdue U., West Lafayette], Tran, Nhan [Fermilab]. 2026-08-28. Delivery Ring Spill Characterization and Impulse Study. https://doi.org/10.2172/3674499
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