collaborators

7 papers

physics.acc-ph2025

Upgrade to Fixed and Translating Scintillation-based Loss Detector System in the Fermilab Drift Tube Linac

E. V. Chen, A. L. Saewert, R. V. Sharankova

The closed-off structure of the Fermilab Drift Tube Linac precludes a robust array of instrumentation from directly monitoring the H- beam that is accelerated from 750 keV to 116 M…

physics.acc-ph2025

Time-of-flight Energy Measurements with BPMs

A. Shemyakin, J. Kuharik, R. Sharankova

The energy of a bunched non-relativistic ion beam can be deduced from measuring the beam phases in neighbouring Beam Position Monitors (BPMs). This report discusses implementation…

physics.acc-ph2025

Measuring Orbit Responses with Oscillating Trajectories in the Fermilab Linac

A. Shemyakin, A. Pathak, R. Sharankova

Recording changes in beam transverse positions re-ported by Beam Position Monitors (BPMs) in response to a beam deflection by an upstream dipole corrector (orbit response) is a pow…

physics.acc-ph2025

Optics Reconstruction in the SCL Section of the FNAL Linac

J. -P. Carneiro, E. Chen, A. Pathak +2

The Side-Coupled Linac (SCL) section of the FNAL linac accelerates the beam from 117 MeV to 401.5 MeV, operating at 22-24 mA beam current. Transverse focusing is performed by 32 qu…

physics.acc-ph2025

Measurements of the Beam Longitudinal Properties in the Fermilab Linac

R. Sharankova, J-P. Carneiro, E. Chen +1

The Fermilab Linac delivers 400MeV, 25mA H; beam. The longitudinal bunch parameters are reconstructed using a Bunch Shape Monitor (BSM) installed in the middle of the Linac. Fo…

physics.acc-ph2024

Emittance Measurements with Wire Scanners in the Fermilab Side-coupled Linac

E. Chen, R. Sharankova, A. Shemyakin +1

The Fermilab Side-Coupled Linac accelerates H-beam from 116 MeV to 400 MeV through seven 805 MHz modules. Twelve wire scanners are present in the Side Coupled Linac and four are pr…