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The Scrounge-atron: a phased approach to the Advanced Hydrotest Facility utilizing proton radiography

The Department of Energy has initiated its Stockpile Stewardship and Management Program (SSMP) to provide a single, integrated technical program for maintaining the continued safety and reliability of the nation's nuclear weapons stockpile in the absence of nuclear testing. Consistent with the...

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Autores principales: Alford, O J, Barnes, P D, Chargin, A K, Dekin, W D, Hartouni, E P, Hockman, J N, Ladran, A S, Libkind, M A, Moore, T L, Pastrnak, J W, Pico, R E, Souza, R J, Stoner, J M, Wilson, J H, Ruggiero, G, Ohnuma, S, Luccio, A U, MacKay, W W
Lenguaje:eng
Publicado: 1999
Materias:
XX
Acceso en línea:http://cds.cern.ch/record/421958
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author Alford, O J
Barnes, P D
Chargin, A K
Dekin, W D
Hartouni, E P
Hockman, J N
Ladran, A S
Libkind, M A
Moore, T L
Pastrnak, J W
Pico, R E
Souza, R J
Stoner, J M
Wilson, J H
Ruggiero, G
Ohnuma, S
Luccio, A U
MacKay, W W
author_facet Alford, O J
Barnes, P D
Chargin, A K
Dekin, W D
Hartouni, E P
Hockman, J N
Ladran, A S
Libkind, M A
Moore, T L
Pastrnak, J W
Pico, R E
Souza, R J
Stoner, J M
Wilson, J H
Ruggiero, G
Ohnuma, S
Luccio, A U
MacKay, W W
author_sort Alford, O J
collection CERN
description The Department of Energy has initiated its Stockpile Stewardship and Management Program (SSMP) to provide a single, integrated technical program for maintaining the continued safety and reliability of the nation's nuclear weapons stockpile in the absence of nuclear testing. Consistent with the SSMP, the Advanced Hydrotest Facility (AHF) has been conceived to provide improved radiographic imaging with multiple axes and multiple time frames. The AHF would be used to better understand the evolution of nuclear weapon primary implosion shape under normal and accident scenarios. There are three fundamental technologies currently under consideration for use on the AHF. These include linear induction acceleration, inductive-adder pulsed-power technology (both technologies using high current electron beams to produce an intense X-ray beam) and high-energy proton accelerators to produce a proton beam. The Scrounge-atron (a proton synchrotron) was conceived to be a relatively low cost demonstration of the viability of the third technology using bursts of energetic protons, magnetic lenses, and particle detectors to produce the radiographic image. In order for the Scrounge-atron to provide information useful for the AHF technology decision, the accelerator would have to be built as quickly and as economically as possible. These conditions can be met by "scrounging" parts from decommissioned accelerators across the country, especially the Main Ring at Fermilab. The Scrounge-atron is designed to meet the baseline parameters for single axis proton radiography: a 20 GeV proton beam of ten pulses, 10 degrees protons each, spaced 250 ns apart. (2 refs).
id cern-421958
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1999
record_format invenio
spelling cern-4219582019-09-30T06:29:59Zhttp://cds.cern.ch/record/421958engAlford, O JBarnes, P DChargin, A KDekin, W DHartouni, E PHockman, J NLadran, A SLibkind, M AMoore, T LPastrnak, J WPico, R ESouza, R JStoner, J MWilson, J HRuggiero, GOhnuma, SLuccio, A UMacKay, W WThe Scrounge-atron: a phased approach to the Advanced Hydrotest Facility utilizing proton radiographyXXThe Department of Energy has initiated its Stockpile Stewardship and Management Program (SSMP) to provide a single, integrated technical program for maintaining the continued safety and reliability of the nation's nuclear weapons stockpile in the absence of nuclear testing. Consistent with the SSMP, the Advanced Hydrotest Facility (AHF) has been conceived to provide improved radiographic imaging with multiple axes and multiple time frames. The AHF would be used to better understand the evolution of nuclear weapon primary implosion shape under normal and accident scenarios. There are three fundamental technologies currently under consideration for use on the AHF. These include linear induction acceleration, inductive-adder pulsed-power technology (both technologies using high current electron beams to produce an intense X-ray beam) and high-energy proton accelerators to produce a proton beam. The Scrounge-atron (a proton synchrotron) was conceived to be a relatively low cost demonstration of the viability of the third technology using bursts of energetic protons, magnetic lenses, and particle detectors to produce the radiographic image. In order for the Scrounge-atron to provide information useful for the AHF technology decision, the accelerator would have to be built as quickly and as economically as possible. These conditions can be met by "scrounging" parts from decommissioned accelerators across the country, especially the Main Ring at Fermilab. The Scrounge-atron is designed to meet the baseline parameters for single axis proton radiography: a 20 GeV proton beam of ten pulses, 10 degrees protons each, spaced 250 ns apart. (2 refs).oai:cds.cern.ch:4219581999
spellingShingle XX
Alford, O J
Barnes, P D
Chargin, A K
Dekin, W D
Hartouni, E P
Hockman, J N
Ladran, A S
Libkind, M A
Moore, T L
Pastrnak, J W
Pico, R E
Souza, R J
Stoner, J M
Wilson, J H
Ruggiero, G
Ohnuma, S
Luccio, A U
MacKay, W W
The Scrounge-atron: a phased approach to the Advanced Hydrotest Facility utilizing proton radiography
title The Scrounge-atron: a phased approach to the Advanced Hydrotest Facility utilizing proton radiography
title_full The Scrounge-atron: a phased approach to the Advanced Hydrotest Facility utilizing proton radiography
title_fullStr The Scrounge-atron: a phased approach to the Advanced Hydrotest Facility utilizing proton radiography
title_full_unstemmed The Scrounge-atron: a phased approach to the Advanced Hydrotest Facility utilizing proton radiography
title_short The Scrounge-atron: a phased approach to the Advanced Hydrotest Facility utilizing proton radiography
title_sort scrounge-atron: a phased approach to the advanced hydrotest facility utilizing proton radiography
topic XX
url http://cds.cern.ch/record/421958
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