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High-Gradient Test of a 3 GHz Single-Cell Cavity
Proton and carbon ion beams present advantageous depth-dose distributions with respect to X-rays. Carbon ions allow a better control of "radioresistant" tumours due to their higher biological response. For deep-seated tumours proton and carbon ion beams of some n...
Autores principales: | , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2010
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Materias: | |
Acceso en línea: | http://cds.cern.ch/record/1364061 |
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author | Verdú-Andrés, S Amaldi, U Bonomi, R Degiovanni, A Garlasché, M Garonna, A Mellace, C Pearce, P S. Verdú-Andrés Wegner, R |
author_facet | Verdú-Andrés, S Amaldi, U Bonomi, R Degiovanni, A Garlasché, M Garonna, A Mellace, C Pearce, P S. Verdú-Andrés Wegner, R |
author_sort | Verdú-Andrés, S |
collection | CERN |
description | Proton and carbon ion beams present advantageous depth-dose distributions with respect to X-rays. Carbon ions allow a better control of "radioresistant" tumours due to their higher biological response. For deep-seated tumours proton and carbon ion beams of some nA and energies of about 200 MeV and 400 MeV/u respectively are needed. For these applications TERA proposed the "cyclinac": a high-frequency linac which boosts the hadrons accelerated by a cyclotron. The dimensions of the complex can be reduced if higher accelerating gradients are achieved in the linac. To test the maximum achievable fields, a 3 GHz cavity has been built by TERA. The 19 mm-long cell is foreseen to be excited at 200 Hz by 3 us RF pulses and should reach a 40 MV/m accelerating gradient, which corresponds to a peak surface electric field Es of 260 MV/m. In a first high-power test performed at CTF3 the cell was operated at 50 Hz with a maximum peak power of 1 MW. The maximum Es achieved was above 350 MV/m. The breakdown rate at these field values was around 10-1 bpp/m. The maximum value of the modified Poynting vector is close to the best values achieved by high gradient structures at 12 and 30 GHz. |
id | cern-1364061 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2010 |
record_format | invenio |
spelling | cern-13640612019-09-30T06:29:59Zhttp://cds.cern.ch/record/1364061engVerdú-Andrés, SAmaldi, UBonomi, RDegiovanni, AGarlasché, MGaronna, AMellace, CPearce, PS. Verdú-AndrésWegner, RHigh-Gradient Test of a 3 GHz Single-Cell CavityAccelerators and Storage RingsProton and carbon ion beams present advantageous depth-dose distributions with respect to X-rays. Carbon ions allow a better control of "radioresistant" tumours due to their higher biological response. For deep-seated tumours proton and carbon ion beams of some nA and energies of about 200 MeV and 400 MeV/u respectively are needed. For these applications TERA proposed the "cyclinac": a high-frequency linac which boosts the hadrons accelerated by a cyclotron. The dimensions of the complex can be reduced if higher accelerating gradients are achieved in the linac. To test the maximum achievable fields, a 3 GHz cavity has been built by TERA. The 19 mm-long cell is foreseen to be excited at 200 Hz by 3 us RF pulses and should reach a 40 MV/m accelerating gradient, which corresponds to a peak surface electric field Es of 260 MV/m. In a first high-power test performed at CTF3 the cell was operated at 50 Hz with a maximum peak power of 1 MW. The maximum Es achieved was above 350 MV/m. The breakdown rate at these field values was around 10-1 bpp/m. The maximum value of the modified Poynting vector is close to the best values achieved by high gradient structures at 12 and 30 GHz.oai:cds.cern.ch:13640612010 |
spellingShingle | Accelerators and Storage Rings Verdú-Andrés, S Amaldi, U Bonomi, R Degiovanni, A Garlasché, M Garonna, A Mellace, C Pearce, P S. Verdú-Andrés Wegner, R High-Gradient Test of a 3 GHz Single-Cell Cavity |
title | High-Gradient Test of a 3 GHz Single-Cell Cavity |
title_full | High-Gradient Test of a 3 GHz Single-Cell Cavity |
title_fullStr | High-Gradient Test of a 3 GHz Single-Cell Cavity |
title_full_unstemmed | High-Gradient Test of a 3 GHz Single-Cell Cavity |
title_short | High-Gradient Test of a 3 GHz Single-Cell Cavity |
title_sort | high-gradient test of a 3 ghz single-cell cavity |
topic | Accelerators and Storage Rings |
url | http://cds.cern.ch/record/1364061 |
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