IP Library Granted Patent US 9,618,630
Granted Patent B2
US 9,618,630 · App. 15/008,499 · Granted Apr 11, 2017

Radiation detector based on a matrix of crossed wavelength-shifting fibers

Inventors: Brian J. Kross (Yorktown, VA); Andrew Weisenberger (Yorktown, VA); Carl Zorn (Yorktown, VA); Wenze Xi (Odenton, MD)
Assignee: JEFFERSON SCIENCE ASSOCIATES, LLC
G01T1/201G01T1/2018
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Quick Facts
Patent No.
US 9,618,630
App. No.
15/008,499
Granted
Apr 11, 2017
Kind
B2
Abstract

A radiation detection system comprising a detection grid of wavelength shifting fibers with a volume of scintillating material at the intersecting points of the fibers. Light detectors, preferably Silicon Photomultipliers, are positioned at the ends of the fibers. The position of radiation is determined from data obtained from the detection grid. The system is easily scalable, customizable, and also suitable for use in soil and underground applications. An alternate embodiment employs a fiber grid sheet or layer which is comprised of multiple fibers secured to one another within the same plane. This embodiment further includes shielding in order to prevent radiation cross-talk within the grid layer.

Claims (14)

1. A radiation detection system comprising:

at least two orthogonal grid arrays of scintillating fibers comprising,

a first grid array of scintillating fibers oriented in a first plane secured to one another along the long axis of each said fiber; said fibers having first and second ends and at least one of said first and second ends being coupled to a light detector;

a second grid array of scintillating fibers oriented in a second plane secured to one another along the long axis of each said fiber; said fibers having first and second ends and at least one of said first and second ends being coupled to a light detector; and,

an electron dense material juxtaposed between the scintillating fibers in the first grid array and between the scintillating fibers in the second grid array.

2. A method of radiation detection comprising providing a first and second grid of wavelength-shifting fibers; assembling said grids into an array in which the first and second grid intersect at various locations; securing detection enhancement elements at the locations where said first and second grids intersect; connecting at least one terminal end of each fiber from said first and second grids to a respective light sensor; and, detecting scintillating photons generated by the enhancement elements indicative of the presence of radiation incident upon said array.

3. A radiation detection system comprising:

at least one grid array of intersecting wavelength-shifting fibers lying in a single plane; said fibers having first and second ends and intersecting one another at essentially right angles;

a scintillation element serving to receive incident radiation and emit a light signal in response thereto positioned at each location where said fibers intersect; and,

said first and second ends of said fibers being coupled to light detectors.

4. A radiation detection system comprising:

a three-dimensional detector matrix formed by a plurality of grid arrays of wavelength-shifting fibers; said grid arrays being composed of a combination of fibers running essentially in an x-direction and fibers running essentially in a y-direction lying; said fibers having first and second ends and crossing one another at essentially right angles;

a scintillation element serving to receive incident radiation and emit a light signal in response thereto positioned at each location where said fibers cross; and,

a light detector coupled to at least one of said first and second ends of each said fiber.

Assignments (2)
CONFIRMATORY LICENSE Recorded Jul 11, 2017
From: JEFFERSON SCIENCE ASSOCIATES, LLC/THOMAS JEFFERSON NATIONAL ACCELERATOR FACILITY
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 042960/0663 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 28, 2016
From: KROSS, BRIAN J; ZORN, CARL; XI, WENZE; WEISENBERGER, ANDREW
To: JEFFERSON SCIENCE ASSOCIATES, LLC
Reel/Frame 037604/0223 →
Continuity (1)
Related Publication 20170059719A1 · Mar 2, 2017