Development of An Epi-thermal Neutron Field for Fundamental Researches for BNCT with A DT Neutron Source

Boron Neutron Capture Therapy (BNCT) is known to be a new promising cancer therapy suppressing influence against normal cells. In Japan, Accelerator Based Neutron Sources (ABNS) are being developed for BNCT. For the spread of ABNS based BNCT, we should characterize the neutron field beforehand. For...

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Main Authors: Osawa Yuta, Imoto Shoichi, Kusaka Sachie, Sato Fuminobu, Tanoshita Masahiro, Murata Isao
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:EPJ Web of Conferences
Online Access:https://doi.org/10.1051/epjconf/201715304008
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spelling doaj-eb30acf647d641ef8547bf03cb3a77482021-08-02T13:57:33ZengEDP SciencesEPJ Web of Conferences2100-014X2017-01-011530400810.1051/epjconf/201715304008epjconf_icrs2017_04008Development of An Epi-thermal Neutron Field for Fundamental Researches for BNCT with A DT Neutron SourceOsawa Yuta0Imoto Shoichi1Kusaka Sachie2Sato Fuminobu3Tanoshita Masahiro4Murata Isao5Graduate School of Engineering Osaka UniversityCity government of KobeGraduate School of Engineering Osaka UniversityGraduate School of Engineering Osaka UniversityDepartment of engineering Fukui University of TechnologyGraduate School of Engineering Osaka UniversityBoron Neutron Capture Therapy (BNCT) is known to be a new promising cancer therapy suppressing influence against normal cells. In Japan, Accelerator Based Neutron Sources (ABNS) are being developed for BNCT. For the spread of ABNS based BNCT, we should characterize the neutron field beforehand. For this purpose, we have been developing a low-energy neutron spectrometer based on 3He position sensitive proportional counter. In this study, a new intense epi-thermal neutron field was developed with a DT neutron source for verification of validity of the spectrometer. After the development, the neutron field characteristics were experimentally evaluated by using activation foils. As a result, we confirmed that an epi-thermal neutron field was successfully developed suppressing fast neutrons substantially. Thereafter, the neutron spectrometer was verified experimentally. In the verification, although a measured detection depth distribution agreed well with the calculated distribution by MCNP, the unfolded spectrum was significantly different from the calculated neutron spectrum due to contribution of the side neutron incidence. Therefore, we designed a new neutron collimator consisting of a polyethylene pre-collimator and boron carbide neutron absorber and confirmed numerically that it could suppress the side incident neutrons and shape the neutron flux to be like a pencil beam.https://doi.org/10.1051/epjconf/201715304008
collection DOAJ
language English
format Article
sources DOAJ
author Osawa Yuta
Imoto Shoichi
Kusaka Sachie
Sato Fuminobu
Tanoshita Masahiro
Murata Isao
spellingShingle Osawa Yuta
Imoto Shoichi
Kusaka Sachie
Sato Fuminobu
Tanoshita Masahiro
Murata Isao
Development of An Epi-thermal Neutron Field for Fundamental Researches for BNCT with A DT Neutron Source
EPJ Web of Conferences
author_facet Osawa Yuta
Imoto Shoichi
Kusaka Sachie
Sato Fuminobu
Tanoshita Masahiro
Murata Isao
author_sort Osawa Yuta
title Development of An Epi-thermal Neutron Field for Fundamental Researches for BNCT with A DT Neutron Source
title_short Development of An Epi-thermal Neutron Field for Fundamental Researches for BNCT with A DT Neutron Source
title_full Development of An Epi-thermal Neutron Field for Fundamental Researches for BNCT with A DT Neutron Source
title_fullStr Development of An Epi-thermal Neutron Field for Fundamental Researches for BNCT with A DT Neutron Source
title_full_unstemmed Development of An Epi-thermal Neutron Field for Fundamental Researches for BNCT with A DT Neutron Source
title_sort development of an epi-thermal neutron field for fundamental researches for bnct with a dt neutron source
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2017-01-01
description Boron Neutron Capture Therapy (BNCT) is known to be a new promising cancer therapy suppressing influence against normal cells. In Japan, Accelerator Based Neutron Sources (ABNS) are being developed for BNCT. For the spread of ABNS based BNCT, we should characterize the neutron field beforehand. For this purpose, we have been developing a low-energy neutron spectrometer based on 3He position sensitive proportional counter. In this study, a new intense epi-thermal neutron field was developed with a DT neutron source for verification of validity of the spectrometer. After the development, the neutron field characteristics were experimentally evaluated by using activation foils. As a result, we confirmed that an epi-thermal neutron field was successfully developed suppressing fast neutrons substantially. Thereafter, the neutron spectrometer was verified experimentally. In the verification, although a measured detection depth distribution agreed well with the calculated distribution by MCNP, the unfolded spectrum was significantly different from the calculated neutron spectrum due to contribution of the side neutron incidence. Therefore, we designed a new neutron collimator consisting of a polyethylene pre-collimator and boron carbide neutron absorber and confirmed numerically that it could suppress the side incident neutrons and shape the neutron flux to be like a pencil beam.
url https://doi.org/10.1051/epjconf/201715304008
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