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US20050135535A1 - Neutron detector using neutron absorbing scintillating particulates in plastic - Google Patents

Neutron detector using neutron absorbing scintillating particulates in plastic
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Publication number
US20050135535A1
US20050135535A1US10/861,926US86192604AUS2005135535A1US 20050135535 A1US20050135535 A1US 20050135535A1US 86192604 AUS86192604 AUS 86192604AUS 2005135535 A1US2005135535 A1US 2005135535A1
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US
United States
Prior art keywords
neutron
scintillating
transparent plastic
neutrons
neutron detector
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
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US10/861,926
Inventor
Steven Wallace
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Neutron Sciences Inc
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Neutron Sciences Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by Neutron Sciences IncfiledCriticalNeutron Sciences Inc
Priority to US10/861,926priorityCriticalpatent/US20050135535A1/en
Assigned to NEUTRON SCIENCES, INC.reassignmentNEUTRON SCIENCES, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: WALLACE, STEVEN
Publication of US20050135535A1publicationCriticalpatent/US20050135535A1/en
Priority to US12/551,554prioritypatent/US9182508B2/en
Abandonedlegal-statusCriticalCurrent

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Abstract

A neutron detector composed of a matrix of scintillating particles imbedded in a lithiated glass is disclosed. The neutron detector detects the neutrons by absorbing the neutron in the6Li isotope which has been enriched from the natural isotopic ratio to a commercial ninety five percent. The utility of the detector is optimized by suitably selecting scintillating particle sizes in the range of the alpha and the triton. Nominal particle sizes are in the range of five to twenty five microns depending upon the specific scintillating particle selected.

Description

Claims (24)

1. A neutron detector comprising:
a glass medium;
a first material which yields at least one of a triton, an alpha particle and a fission fragment when said first material absorbs a neutron, said first material being incorporated into said glass medium;
a second material embedded within said glass medium, said second material consisting of scintillating particles which scintillate when traversed by said at least one of a triton, an alpha particle and a fission fragment, said second material being defined by small particulates such that said glass medium surrounding said small particulates when emitting charged particles from the constituent within said glass medium is thin relative to a range of said charged particles;
a transparent plastic into which said glass medium, said first material and said second material are dispersed; and
a surface coating disposed on said transparent plastic for reflecting scintillation light pulses.
9. The neutron detector ofclaim 2 wherein said scintillating particles are selecting from the group consisting of: cerium doped strontium sulfide, bismuth doped strontium sulfide, cerium activated calcium sulfide, europium activated calcium sulfide, bismuth germanate, cerium activated yttrium silicate, aluminum perovskite, cerium activated yttrium aluminum garnet, terbium activated yttrium aluminum garnet, cerium activated lutetium oxyorthosilicate, europium activated yttrium oxide, europium activated calcium fluoride, gallium activated zinc oxide, thallium-activated cesium iodide, europium activated lanthanum oxsulfide, manganese-lead activated calcium silicate, europium-activated gadolinium oxysulfide, europium activated indium borate, cerium-activated calcium sulfide, and zinc sulfide activate with silver.
21. The neutron detector ofclaim 1 wherein said transparent plastic includes a plurality of transparent plastic elements, said glass medium, said first material and said second scintillator material being dispersed in said plurality of transparent plastic elements, each of said plurality of transparent plastic elements being optically coupled to a multi-anode photomultiplier, whereby detection of neutrons in each of said plurality of transparent plastic elements is identified individually and the occurrence of the absorption of a neutron is temporally identified with respect to a repeating fiducial timing signal synchronized with a pulsing of an external neutron source thus allowing each neutron detection event in each of said plurality of transparent plastic elements to be analyzed temporally with respect to each other.
US10/861,9262003-06-052004-06-04Neutron detector using neutron absorbing scintillating particulates in plasticAbandonedUS20050135535A1 (en)

Priority Applications (2)

Application NumberPriority DateFiling DateTitle
US10/861,926US20050135535A1 (en)2003-06-052004-06-04Neutron detector using neutron absorbing scintillating particulates in plastic
US12/551,554US9182508B2 (en)2003-06-052009-08-31Neutron detector using neutron absorbing scintillating particulates in plastic

Applications Claiming Priority (2)

Application NumberPriority DateFiling DateTitle
US47600103P2003-06-052003-06-05
US10/861,926US20050135535A1 (en)2003-06-052004-06-04Neutron detector using neutron absorbing scintillating particulates in plastic

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US12/551,554ContinuationUS9182508B2 (en)2003-06-052009-08-31Neutron detector using neutron absorbing scintillating particulates in plastic

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US20050135535A1true US20050135535A1 (en)2005-06-23

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US10/861,926AbandonedUS20050135535A1 (en)2003-06-052004-06-04Neutron detector using neutron absorbing scintillating particulates in plastic
US12/551,554Expired - Fee RelatedUS9182508B2 (en)2003-06-052009-08-31Neutron detector using neutron absorbing scintillating particulates in plastic

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US12/551,554Expired - Fee RelatedUS9182508B2 (en)2003-06-052009-08-31Neutron detector using neutron absorbing scintillating particulates in plastic

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