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Review of Scientific Instruments
Test results of the proton injector of the Proton Engineering Frontier Project accelerator
Instrumentation
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spelling Kwon, Hyeok-Jung Kim, Han-Sung Cho, Yong-Sub 0034-6748 1089-7623 AIP Publishing Instrumentation http://dx.doi.org/10.1063/1.2816916 <jats:p>One of the goals of the Proton Engineering Frontier Project (PEFP) is to develop a 100MeV proton accelerator. As a low energy part, a 20MeV proton linac has been developed and tested. The 20MeV accelerator consists of a 50keV proton injector, a 3MeV radio frequency quadrupole, and a 20MeV drift tube linac. The proton injector includes a duoplasmatron type ion source and a low energy beam transport. After a preliminary test with 1mA peak current of the 20MeV accelerator, the proton injector was modified with the goal of increasing the 20MeV beam current up to 20mA peak value. The modifications include the reduction of the proton injector length, installation of a beam current monitor, and electron trap and supplement of the solenoid and steering magnets. In this paper, the modifications of the PEFP proton injector are described and initial test results are presented.</jats:p> Test results of the proton injector of the Proton Engineering Frontier Project accelerator Review of Scientific Instruments
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title Test results of the proton injector of the Proton Engineering Frontier Project accelerator
title_unstemmed Test results of the proton injector of the Proton Engineering Frontier Project accelerator
title_full Test results of the proton injector of the Proton Engineering Frontier Project accelerator
title_fullStr Test results of the proton injector of the Proton Engineering Frontier Project accelerator
title_full_unstemmed Test results of the proton injector of the Proton Engineering Frontier Project accelerator
title_short Test results of the proton injector of the Proton Engineering Frontier Project accelerator
title_sort test results of the proton injector of the proton engineering frontier project accelerator
topic Instrumentation
url http://dx.doi.org/10.1063/1.2816916
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description <jats:p>One of the goals of the Proton Engineering Frontier Project (PEFP) is to develop a 100MeV proton accelerator. As a low energy part, a 20MeV proton linac has been developed and tested. The 20MeV accelerator consists of a 50keV proton injector, a 3MeV radio frequency quadrupole, and a 20MeV drift tube linac. The proton injector includes a duoplasmatron type ion source and a low energy beam transport. After a preliminary test with 1mA peak current of the 20MeV accelerator, the proton injector was modified with the goal of increasing the 20MeV beam current up to 20mA peak value. The modifications include the reduction of the proton injector length, installation of a beam current monitor, and electron trap and supplement of the solenoid and steering magnets. In this paper, the modifications of the PEFP proton injector are described and initial test results are presented.</jats:p>
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author Kwon, Hyeok-Jung, Kim, Han-Sung, Cho, Yong-Sub
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description <jats:p>One of the goals of the Proton Engineering Frontier Project (PEFP) is to develop a 100MeV proton accelerator. As a low energy part, a 20MeV proton linac has been developed and tested. The 20MeV accelerator consists of a 50keV proton injector, a 3MeV radio frequency quadrupole, and a 20MeV drift tube linac. The proton injector includes a duoplasmatron type ion source and a low energy beam transport. After a preliminary test with 1mA peak current of the 20MeV accelerator, the proton injector was modified with the goal of increasing the 20MeV beam current up to 20mA peak value. The modifications include the reduction of the proton injector length, installation of a beam current monitor, and electron trap and supplement of the solenoid and steering magnets. In this paper, the modifications of the PEFP proton injector are described and initial test results are presented.</jats:p>
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spelling Kwon, Hyeok-Jung Kim, Han-Sung Cho, Yong-Sub 0034-6748 1089-7623 AIP Publishing Instrumentation http://dx.doi.org/10.1063/1.2816916 <jats:p>One of the goals of the Proton Engineering Frontier Project (PEFP) is to develop a 100MeV proton accelerator. As a low energy part, a 20MeV proton linac has been developed and tested. The 20MeV accelerator consists of a 50keV proton injector, a 3MeV radio frequency quadrupole, and a 20MeV drift tube linac. The proton injector includes a duoplasmatron type ion source and a low energy beam transport. After a preliminary test with 1mA peak current of the 20MeV accelerator, the proton injector was modified with the goal of increasing the 20MeV beam current up to 20mA peak value. The modifications include the reduction of the proton injector length, installation of a beam current monitor, and electron trap and supplement of the solenoid and steering magnets. In this paper, the modifications of the PEFP proton injector are described and initial test results are presented.</jats:p> Test results of the proton injector of the Proton Engineering Frontier Project accelerator Review of Scientific Instruments
spellingShingle Kwon, Hyeok-Jung, Kim, Han-Sung, Cho, Yong-Sub, Review of Scientific Instruments, Test results of the proton injector of the Proton Engineering Frontier Project accelerator, Instrumentation
title Test results of the proton injector of the Proton Engineering Frontier Project accelerator
title_full Test results of the proton injector of the Proton Engineering Frontier Project accelerator
title_fullStr Test results of the proton injector of the Proton Engineering Frontier Project accelerator
title_full_unstemmed Test results of the proton injector of the Proton Engineering Frontier Project accelerator
title_short Test results of the proton injector of the Proton Engineering Frontier Project accelerator
title_sort test results of the proton injector of the proton engineering frontier project accelerator
title_unstemmed Test results of the proton injector of the Proton Engineering Frontier Project accelerator
topic Instrumentation
url http://dx.doi.org/10.1063/1.2816916