Development of an Integrating Sphere-Based Wide-Range Light Source System for the Linearity Evaluation of a Photodetector Used in Radiation Detection and Bioanalysis Instruments

We developed a compact wide-range light source system for evaluating the linearity of photomultiplier tube (PMT) output. This system utilizes two integrating spheres equipped with a continuously variable slit and output aperture to modulate a stabilized light-emitting diode light source, producing a...

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Published inSensors (Basel, Switzerland) Vol. 24; no. 23; p. 7544
Main Authors Matsumoto, Tetsuro, Masuda, Akihiko, Tanabe, Minoru, Manabe, Seiya, Harano, Hideki, Niwa, Kazuki
Format Journal Article
LanguageEnglish
Published Switzerland MDPI AG 01.12.2024
MDPI
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ISSN1424-8220
1424-8220
DOI10.3390/s24237544

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Abstract We developed a compact wide-range light source system for evaluating the linearity of photomultiplier tube (PMT) output. This system utilizes two integrating spheres equipped with a continuously variable slit and output aperture to modulate a stabilized light-emitting diode light source, producing an output light range as wide as seven orders of magnitude. To verify the wide linearity range of the integrating sphere system, three silicon photodiodes coupled with electric current readers monitored the light intensity and simultaneously confirmed each other’s linearity. Using this system, we evaluated the linearity of the PMT used in a neutron detector we are currently developing and found it to have a linear range of more than four orders of magnitude. Non-linearity characteristics were also successfully measured in detail at a higher output range. Neutron detector operation requires both calibration of the detection efficiency and evaluation of the linearity between the neutron dose and its output. These results indicate that this system is a simple and useful method to evaluate the linearity of photodetectors used in radiation detectors and other applications.
AbstractList We developed a compact wide-range light source system for evaluating the linearity of photomultiplier tube (PMT) output. This system utilizes two integrating spheres equipped with a continuously variable slit and output aperture to modulate a stabilized light-emitting diode light source, producing an output light range as wide as seven orders of magnitude. To verify the wide linearity range of the integrating sphere system, three silicon photodiodes coupled with electric current readers monitored the light intensity and simultaneously confirmed each other’s linearity. Using this system, we evaluated the linearity of the PMT used in a neutron detector we are currently developing and found it to have a linear range of more than four orders of magnitude. Non-linearity characteristics were also successfully measured in detail at a higher output range. Neutron detector operation requires both calibration of the detection efficiency and evaluation of the linearity between the neutron dose and its output. These results indicate that this system is a simple and useful method to evaluate the linearity of photodetectors used in radiation detectors and other applications.
We developed a compact wide-range light source system for evaluating the linearity of photomultiplier tube (PMT) output. This system utilizes two integrating spheres equipped with a continuously variable slit and output aperture to modulate a stabilized light-emitting diode light source, producing an output light range as wide as seven orders of magnitude. To verify the wide linearity range of the integrating sphere system, three silicon photodiodes coupled with electric current readers monitored the light intensity and simultaneously confirmed each other's linearity. Using this system, we evaluated the linearity of the PMT used in a neutron detector we are currently developing and found it to have a linear range of more than four orders of magnitude. Non-linearity characteristics were also successfully measured in detail at a higher output range. Neutron detector operation requires both calibration of the detection efficiency and evaluation of the linearity between the neutron dose and its output. These results indicate that this system is a simple and useful method to evaluate the linearity of photodetectors used in radiation detectors and other applications.We developed a compact wide-range light source system for evaluating the linearity of photomultiplier tube (PMT) output. This system utilizes two integrating spheres equipped with a continuously variable slit and output aperture to modulate a stabilized light-emitting diode light source, producing an output light range as wide as seven orders of magnitude. To verify the wide linearity range of the integrating sphere system, three silicon photodiodes coupled with electric current readers monitored the light intensity and simultaneously confirmed each other's linearity. Using this system, we evaluated the linearity of the PMT used in a neutron detector we are currently developing and found it to have a linear range of more than four orders of magnitude. Non-linearity characteristics were also successfully measured in detail at a higher output range. Neutron detector operation requires both calibration of the detection efficiency and evaluation of the linearity between the neutron dose and its output. These results indicate that this system is a simple and useful method to evaluate the linearity of photodetectors used in radiation detectors and other applications.
Audience Academic
Author Manabe, Seiya
Matsumoto, Tetsuro
Masuda, Akihiko
Tanabe, Minoru
Niwa, Kazuki
Harano, Hideki
AuthorAffiliation National Metrology Institute of Japan, National Institute of Advanced Industrial Science and Technology, AIST Central, 1-1-1 Umezono, Tsukuba 305-8568, Japan; t-matsumoto@aist.go.jp (T.M.); aki-masuda@aist.go.jp (A.M.); tanabe-m@aist.go.jp (M.T.); s-manabe@aist.go.jp (S.M.); h-harano@aist.go.jp (H.H.)
AuthorAffiliation_xml – name: National Metrology Institute of Japan, National Institute of Advanced Industrial Science and Technology, AIST Central, 1-1-1 Umezono, Tsukuba 305-8568, Japan; t-matsumoto@aist.go.jp (T.M.); aki-masuda@aist.go.jp (A.M.); tanabe-m@aist.go.jp (M.T.); s-manabe@aist.go.jp (S.M.); h-harano@aist.go.jp (H.H.)
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photodetector
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StartPage 7544
SubjectTerms Analysis
BNCT
Detectors
Evaluation
integrating spheres
Light emitting diodes
light source
linearity
Medical equipment
Neutrons
photodetector
Physiological apparatus
Radiation
Radiation detectors
Spheres
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Title Development of an Integrating Sphere-Based Wide-Range Light Source System for the Linearity Evaluation of a Photodetector Used in Radiation Detection and Bioanalysis Instruments
URI https://www.ncbi.nlm.nih.gov/pubmed/39686081
https://www.proquest.com/docview/3144160671
https://www.proquest.com/docview/3146917038
https://pubmed.ncbi.nlm.nih.gov/PMC11644324
https://doaj.org/article/79860485dc8c43ffa9896d1a5d4d48c8
Volume 24
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