DOE Patents title logo U.S. Department of Energy
Office of Scientific and Technical Information

Title: Gas-filled radio-frequency beam detector

Abstract

A system for monitoring intensity of a particle beam can include one or more radio-frequency (RF) detectors coupled to a signal analyzer that can be placed outside the radiation field of the particle beam. Each RF detector can include a gas-filled RF cavity coupled to one or more gas-filled waveguides. The signal analyzer can self-calibrate before the particle beam is turned on for determining one or more absolute intensities of the particle beam when the particle beam is present.

Inventors:
; ; ;
Issue Date:
Research Org.:
Muons, Inc., Batavia, IL (United States)
Sponsoring Org.:
USDOE
OSTI Identifier:
1986926
Patent Number(s):
11525931
Application Number:
16/855,125
Assignee:
Muons, Inc. (Batavia, IL)
DOE Contract Number:  
SC0013795
Resource Type:
Patent
Resource Relation:
Patent File Date: 04/22/2020
Country of Publication:
United States
Language:
English

Citation Formats

Yonehara, Katsuya, Johnson, Rolland Paul, Kazakevich, Grigory, and Moretti, Alfred. Gas-filled radio-frequency beam detector. United States: N. p., 2022. Web.
Yonehara, Katsuya, Johnson, Rolland Paul, Kazakevich, Grigory, & Moretti, Alfred. Gas-filled radio-frequency beam detector. United States.
Yonehara, Katsuya, Johnson, Rolland Paul, Kazakevich, Grigory, and Moretti, Alfred. Tue . "Gas-filled radio-frequency beam detector". United States. https://www.osti.gov/servlets/purl/1986926.
@article{osti_1986926,
title = {Gas-filled radio-frequency beam detector},
author = {Yonehara, Katsuya and Johnson, Rolland Paul and Kazakevich, Grigory and Moretti, Alfred},
abstractNote = {A system for monitoring intensity of a particle beam can include one or more radio-frequency (RF) detectors coupled to a signal analyzer that can be placed outside the radiation field of the particle beam. Each RF detector can include a gas-filled RF cavity coupled to one or more gas-filled waveguides. The signal analyzer can self-calibrate before the particle beam is turned on for determining one or more absolute intensities of the particle beam when the particle beam is present.},
doi = {},
journal = {},
number = ,
volume = ,
place = {United States},
year = {Tue Dec 13 00:00:00 EST 2022},
month = {Tue Dec 13 00:00:00 EST 2022}
}

Works referenced in this record:

In-line electron beam energy monitor and control
patent, October 1989


Position Monitoring System for a Pulse-Modulated Charged Particle Beam
patent, February 1970


Plasma Panel Based Ionizing-Particle Radiation Detector
patent-application, October 2010


Variable-Density Preforms
patent-application, January 2010


Precision vector control of a superconducting RF cavity driven by an injection locked magnetron
journal, March 2015


Study of high pressure gas filled RF cavities for muon collider
conference, January 2013


Configurable linear accelerator trigger distribution system and method
patent, July 2019


Plasma Panel Based Ionizing-Particle Radiation Detector
patent-application, March 2013


Beam intensity monitor for a high energy particle beam system
patent, February 1988


Beam tests of ionization chambers for the numi neutrino beam
journal, August 2003


Gas Filled RF Resonator Hadron Beam Monitor for Intense Neutrino Beam Experiments
conference, February 2017

  • Yonehara, Katsuya; Cummings, M. A.; Johnson, R. P.
  • Proceedings of 38th International Conference on High Energy Physics — PoS(ICHEP2016)
  • https://doi.org/10.22323/1.282.1211

Proton Therapy Tuning Apparatus and Method of Use Thereof
patent-application, November 2021


Gas-Filled Radio-Frequency Beam Detector
patent-application, October 2020


Variable-Density Preforms
patent-application, September 2012


EM Energy Application for Combustion Engines
patent-application, October 2014


Method and Apparatus for Producing Radioisotopes Using Fractional Distillation
patent-application, December 2018


Plasma Panel Based Ionizing-Particle Radiation Detector
patent-application, November 2017