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20122022
most citedPrecision Vector Control of a Superconducting RF Cavity driven by an Injection Locked Magnetron

23 citations · 30 across the 6 of their papers we have counts for

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physics.acc-ph2022

SRF Cavity Emulator for PIP-II LLRF Lab and Field Testing

Ahmed Syed, Brian Chase, Philip Varghese +1

There are many stages in the LLRF and RF system development process for any new accelerator that can take advantage of hardware emulation of the high-power RF system and RF cavitie…

physics.acc-ph2018

Adaptive beam loading compensation in room temperature bunching cavities

J. P. Edelen, B. E. Chase, E. Cullerton +1

In this paper we present the design, simulation, and proof of principle results of an optimization based adaptive feed-forward algorithm for beam-loading compensation in a high imp…

physics.acc-ph2018

LLRF system for the Fermilab Muon g-2 and Mu2e projects

P. Varghese, B. Chase

The Mu2e experiment measures the conversion rate of muons into electrons and the Muon g-2 experiment measures the muon magnetic moment. Both experiments require 53 MHz batches of 8…

physics.acc-ph2018

Low Level RF Control for the PIP-II Accelerator

J. P. Edelen, B. E. Chase, E. Cullerton +9

The PIP-II accelerator is a proposed upgrade to the Fermilab accelerator complex that will replace the existing, 400 MeV room temperature LINAC with an 800 MeV superconducting LINA…

physics.acc-ph201523 cited

Precision Vector Control of a Superconducting RF Cavity driven by an Injection Locked Magnetron

Brian Chase, Ralph Pasquinelli, Ed Cullerton +1

The technique presented in this paper enables the regulation of both radio frequency amplitude and phase in narrow band devices such as a Superconducting RF (SRF) cavity driven by…

physics.acc-ph20132 cited

Test Results of Tesla-Style Cryomodules at Fermilab

E. Harms, K. Carlson, B. Chase +13

Commissioning and operation of the first Tesla-style Cryomodule (CM-1) at Fermilab was concluded in recent months. A second Tesla Type III+ module, RFCA002, will be replacing it. C…