activity
20122022
most citedMeasurement of the Positive Muon Anomalous Magnetic Moment to 0.46 ppm

1.3k citations · 1.4k across the 5 of their papers we have counts for

collaborators

7 papers

physics.acc-ph2022

Beam-Based Diagnostics of Electric Guide Fields and Lattice Parameters for Run-1 of the Muon g-2 Storage Ring at Fermilab

David Tarazona, Martin Berz, Jason Crnkovic +6

A portion of the Muon g-2 Storage Ring electric system, which provides vertical beam focusing, exhibited an unexpected time dependence that produced a characteristic evolution of t…

hep-ex20211.3k cited

Measurement of the Positive Muon Anomalous Magnetic Moment to 0.46 ppm

B. Abi, T. Albahri, S. Al-Kilani +234

We present the first results of the Fermilab Muon g-2 Experiment for the positive muon magnetic anomaly . The anomaly is determined from the precision measurem…

physics.acc-ph20195 cited

Accurate Taylor transfer maps for large aperture iron dominated magnets used in charged particle separators and spectrometers

E. Kazantseva, O. Boine-Frankenheim, H. Weick +2

For high-resolution separators like the projected Super-FRS at FAIR, an adapted and accurate ion-optical model considering realistic B-dependent magnet parameters is crucial in ach…

physics.acc-ph20196 cited

Feasibility Study for an EDM Storage Ring

F. Abusaif, A. Aggarwal, A. Aksentev +92

This project exploits charged particles confined as a storage ring beam (proton, deuteron, possibly He) to search for an intrinsic electric dipole moment (EDM, ) aligne…

physics.acc-ph2018

Hybrid Methods for Muon Accelerator Simulations with Ionization Cooling

Josiah Kunz, Pavel Snopok, Martin Berz +1

Muon ionization cooling involves passing particles through solid or liquid absorbers. Careful simulations are required to design muon cooling channels. New features have been devel…

physics.acc-ph2018

Direct Calculation of the Transfer Map of Electrostatic Deflectors, and Comparison with the Codes COSY INFINITY and GIOS

Eremey Valetov, Martin Berz, Kyoko Makino

COSY INFINITY uses a beamline coordinate system with a Frenet-Serret frame relative to the reference particle, and calculates differential algebra-valued transfer maps by integrati…