activity
20242026
collaborators

12 papers

physics.acc-ph2026

Diagnosing Ghost Bunches with the Upstream Extinction Monitor in the Mu2e Experiment

R. Hensley, E. Prebys, A. Gaponenko

The Mu2e experiment has a stringent requirement for extinction of the pulsed proton beam, referring to the elimination of particles between proton bunches to a relative level of 10…

physics.acc-ph2026

Slow Extraction Beam Commissioning for the Mu2e Experiment at Fermilab

V. Nagaslaev, G. Annala, J. Berlioz +7

Following the successful completion of the Muon g-2 experiment run at Fermilab, the Muon Campus facility has been reconfigured from delivering 3 GeV muon beams to the g-2 storage r…

hep-ex2026

Final Report on the Measurement of the Positive Muon Anomalous Magnetic Moment at Fermilab to 127 ppb

2 Collaboration, D. P. Aguillard, T. Albahri +192

This report details the final measurement of the muon magnetic anomaly, , by the Muon experiment at Fermi National Accelerator Laboratory (FNAL), using posit…

physics.acc-ph2025

TCLK Must Stay! CAMAC Must Go! How Does Fermilab Move Forward

M. R. Austin, L. Carmichael, D. McArthur +2

The current Timing System at Fermilab has been around for 40 years and currently relies on 7 CAMAC crates and over 100 CAMAC cards to produce the Tevatron Clock (TCLK). Thanks to t…

hep-ex2025

LDMX -- The Light Dark Matter eXperiment

Torsten Akesson, Layan Alsaraya, Stephen Appert +116

The Light Dark Matter eXperiment (LDMX) is an electron fixed-target experiment optimized to search for sub-GeV dark matter production through the missing momentum signature. LDMX i…

physics.acc-ph2025

Performance Enhancement of Medium-Temperature Baked Niobium SRF Cavity by Surface Contamination Removal

V. Chouhan, D. Bice, A. Cravatta +5

Medium temperature (mid-T) baking, typically conducted at 300 350 C, enhances the quality factor of niobium (Nb) superconducting radio frequency cavities. High vacuum furnace bakin…