Ionization beam profile monitor for operation under hard environmental conditions
The design and the performance of the Ionization Beam Profile Monitor (IBPM) operating on the residual gas ionization principle are described. The main advantage of the constructed device is the non-contact measuring method. Operating under hard environmental conditions it delivers the information a...
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Institute for Nuclear Research, National Academy of Sciences of Ukraine
2011-03-01
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doaj-96efe4148d484e87ab94dac29b2431bc2020-11-25T00:00:39ZengInstitute for Nuclear Research, National Academy of Sciences of UkraineÂderna Fìzika ta Energetika1818-331X2074-05652011-03-0112198103Ionization beam profile monitor for operation under hard environmental conditionsYu. G. Teterev0G. Kaminski1Phi Thanh Huong2E. Kozik3Joint Institute for Nuclear Research, Dubna, Moscow region, RussiaJoint Institute for Nuclear Research, Dubna, Moscow region, Russia; Institute of Nuclear Physics, Polish Academy of Sciences, Krakow, PolandJoint Institute for Nuclear Research, Dubna, Moscow region, RussiaInstitute of Nuclear Physics, Polish Academy of Sciences, Krakow, PolandThe design and the performance of the Ionization Beam Profile Monitor (IBPM) operating on the residual gas ionization principle are described. The main advantage of the constructed device is the non-contact measuring method. Operating under hard environmental conditions it delivers the information about the primary beam position, profile and intensity in “on-line” regime. It was tested under high gamma and neutron radiation conditions and changing vacuum using a range of low and intermediate energy beams at the beam current of a few nA to 15 μA. The diagnostic box was located in the vicinity of the accelerator, where the neutron flux was over 106 n/cm2s. It was found out that the device is capable to operate in vacuum in the range of 10-6÷10-3 mbar without the loss of the resolution power at the beam current as low as a few nA. The IBPM is prospective for beam profile monitoring due to long time. Emergency situations do not lead to decrease of its operability.http://jnpae.kinr.kiev.ua/12.1/Articles_PDF/jnpae-2011-12-0098-Teterev.pdfionization beam profile monitorheavy ion beamsbeam profile diagnosticon-line beam monitoringth |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yu. G. Teterev G. Kaminski Phi Thanh Huong E. Kozik |
spellingShingle |
Yu. G. Teterev G. Kaminski Phi Thanh Huong E. Kozik Ionization beam profile monitor for operation under hard environmental conditions Âderna Fìzika ta Energetika ionization beam profile monitor heavy ion beams beam profile diagnostic on-line beam monitoring th |
author_facet |
Yu. G. Teterev G. Kaminski Phi Thanh Huong E. Kozik |
author_sort |
Yu. G. Teterev |
title |
Ionization beam profile monitor for operation under hard environmental conditions |
title_short |
Ionization beam profile monitor for operation under hard environmental conditions |
title_full |
Ionization beam profile monitor for operation under hard environmental conditions |
title_fullStr |
Ionization beam profile monitor for operation under hard environmental conditions |
title_full_unstemmed |
Ionization beam profile monitor for operation under hard environmental conditions |
title_sort |
ionization beam profile monitor for operation under hard environmental conditions |
publisher |
Institute for Nuclear Research, National Academy of Sciences of Ukraine |
series |
Âderna Fìzika ta Energetika |
issn |
1818-331X 2074-0565 |
publishDate |
2011-03-01 |
description |
The design and the performance of the Ionization Beam Profile Monitor (IBPM) operating on the residual gas ionization principle are described. The main advantage of the constructed device is the non-contact measuring method. Operating under hard environmental conditions it delivers the information about the primary beam position, profile and intensity in “on-line” regime. It was tested under high gamma and neutron radiation conditions and changing vacuum using a range of low and intermediate energy beams at the beam current of a few nA to 15 μA. The diagnostic box was located in the vicinity of the accelerator, where the neutron flux was over 106 n/cm2s. It was found out that the device is capable to operate in vacuum in the range of 10-6÷10-3 mbar without the loss of the resolution power at the beam current as low as a few nA. The IBPM is prospective for beam profile monitoring due to long time. Emergency situations do
not lead to decrease of its operability. |
topic |
ionization beam profile monitor heavy ion beams beam profile diagnostic on-line beam monitoring th |
url |
http://jnpae.kinr.kiev.ua/12.1/Articles_PDF/jnpae-2011-12-0098-Teterev.pdf |
work_keys_str_mv |
AT yugteterev ionizationbeamprofilemonitorforoperationunderhardenvironmentalconditions AT gkaminski ionizationbeamprofilemonitorforoperationunderhardenvironmentalconditions AT phithanhhuong ionizationbeamprofilemonitorforoperationunderhardenvironmentalconditions AT ekozik ionizationbeamprofilemonitorforoperationunderhardenvironmentalconditions |
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