Cargando…
Linac4 H$^-$ source R&D;: Cusp free ICP and magnetron discharge
The 2MHz radio-frequency inductively coupled plasma heating (ICP RF) of Linac4’s IS03 H- source is more efficient without its octupole cusp in offset hallbach configuration. This was shown by Particle in cell Monte-Carlo (PICMC) simulation using the NINJA software [1] and confirmed by plasma charac...
Autores principales: | , , , , , , , , , , , , , |
---|---|
Lenguaje: | eng |
Publicado: |
2018
|
Materias: | |
Acceso en línea: | https://dx.doi.org/10.1063/1.5083762 http://cds.cern.ch/record/2838904 |
_version_ | 1780975947529322496 |
---|---|
author | Lettry, J Bertolo, S Fantz, U Guida, R Kapusniak, K Di Lorenzo, F Machado, C Mastrostefano, C Minea, T O'Neil, M Neupert, H Noll, D Steyaert, D Thaus, N |
author_facet | Lettry, J Bertolo, S Fantz, U Guida, R Kapusniak, K Di Lorenzo, F Machado, C Mastrostefano, C Minea, T O'Neil, M Neupert, H Noll, D Steyaert, D Thaus, N |
author_sort | Lettry, J |
collection | CERN |
description | The 2MHz radio-frequency inductively coupled plasma heating (ICP RF) of Linac4’s IS03 H-
source is more
efficient without its octupole cusp in offset hallbach configuration. This was shown by Particle in cell Monte-Carlo (PICMC) simulation using the NINJA software [1] and confirmed by plasma characterization via optical emission spectroscopy
[2,3], an easier plasma ignition is also anticipated. In this paper, we present preliminary results of an Alumina plasma
chamber IS03 H-
source [4] operated without magnetic cusp. Operation under monthly cesiation induces a slow evolution
of the molybdenum cesiated surface correlated with an increase of the co-extracted electron yield. An improved stability
of the extracted H-
beam is achieved by compensating the Cs-losses.
The high intensity option for Linac4 features an adaptation of BNL’s Magnetron. Simulation of this complex H2-Cs arc
discharge plasma, where electrons are emitted from a cesiated molybdenum cathode, requires characterization of the plasma
impedance and knowledge of hydrogen and cesium densities. We present a measurement of plasma impedance over the
range of discharge current, hydrogen and cesium-densities. |
id | cern-2838904 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2018 |
record_format | invenio |
spelling | cern-28389042022-10-29T19:23:14Zdoi:10.1063/1.5083762http://cds.cern.ch/record/2838904engLettry, JBertolo, SFantz, UGuida, RKapusniak, KDi Lorenzo, FMachado, CMastrostefano, CMinea, TO'Neil, MNeupert, HNoll, DSteyaert, DThaus, NLinac4 H$^-$ source R&D;: Cusp free ICP and magnetron dischargeAccelerators and Storage RingsThe 2MHz radio-frequency inductively coupled plasma heating (ICP RF) of Linac4’s IS03 H- source is more efficient without its octupole cusp in offset hallbach configuration. This was shown by Particle in cell Monte-Carlo (PICMC) simulation using the NINJA software [1] and confirmed by plasma characterization via optical emission spectroscopy [2,3], an easier plasma ignition is also anticipated. In this paper, we present preliminary results of an Alumina plasma chamber IS03 H- source [4] operated without magnetic cusp. Operation under monthly cesiation induces a slow evolution of the molybdenum cesiated surface correlated with an increase of the co-extracted electron yield. An improved stability of the extracted H- beam is achieved by compensating the Cs-losses. The high intensity option for Linac4 features an adaptation of BNL’s Magnetron. Simulation of this complex H2-Cs arc discharge plasma, where electrons are emitted from a cesiated molybdenum cathode, requires characterization of the plasma impedance and knowledge of hydrogen and cesium densities. We present a measurement of plasma impedance over the range of discharge current, hydrogen and cesium-densities.oai:cds.cern.ch:28389042018 |
spellingShingle | Accelerators and Storage Rings Lettry, J Bertolo, S Fantz, U Guida, R Kapusniak, K Di Lorenzo, F Machado, C Mastrostefano, C Minea, T O'Neil, M Neupert, H Noll, D Steyaert, D Thaus, N Linac4 H$^-$ source R&D;: Cusp free ICP and magnetron discharge |
title | Linac4 H$^-$ source R&D;: Cusp free ICP and magnetron discharge |
title_full | Linac4 H$^-$ source R&D;: Cusp free ICP and magnetron discharge |
title_fullStr | Linac4 H$^-$ source R&D;: Cusp free ICP and magnetron discharge |
title_full_unstemmed | Linac4 H$^-$ source R&D;: Cusp free ICP and magnetron discharge |
title_short | Linac4 H$^-$ source R&D;: Cusp free ICP and magnetron discharge |
title_sort | linac4 h$^-$ source r&d;: cusp free icp and magnetron discharge |
topic | Accelerators and Storage Rings |
url | https://dx.doi.org/10.1063/1.5083762 http://cds.cern.ch/record/2838904 |
work_keys_str_mv | AT lettryj linac4hsourcerdcuspfreeicpandmagnetrondischarge AT bertolos linac4hsourcerdcuspfreeicpandmagnetrondischarge AT fantzu linac4hsourcerdcuspfreeicpandmagnetrondischarge AT guidar linac4hsourcerdcuspfreeicpandmagnetrondischarge AT kapusniakk linac4hsourcerdcuspfreeicpandmagnetrondischarge AT dilorenzof linac4hsourcerdcuspfreeicpandmagnetrondischarge AT machadoc linac4hsourcerdcuspfreeicpandmagnetrondischarge AT mastrostefanoc linac4hsourcerdcuspfreeicpandmagnetrondischarge AT mineat linac4hsourcerdcuspfreeicpandmagnetrondischarge AT oneilm linac4hsourcerdcuspfreeicpandmagnetrondischarge AT neuperth linac4hsourcerdcuspfreeicpandmagnetrondischarge AT nolld linac4hsourcerdcuspfreeicpandmagnetrondischarge AT steyaertd linac4hsourcerdcuspfreeicpandmagnetrondischarge AT thausn linac4hsourcerdcuspfreeicpandmagnetrondischarge |