IP Library Granted Patent US 10,830,911
Granted Patent B2
US 10,830,911 · App. 16/382,973 · Granted Nov 10, 2020

Wavelength-shifting sheet-coupled scintillation detectors

Inventors: Aaron J. Couture (Reading, MA); Jeffrey M. Denker (Woburn, MA)
Assignee: American Science and Engineering, Inc.
G01T1/2006G01T1/2002
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Quick Facts
Patent No.
US 10,830,911
App. No.
16/382,973
Granted
Nov 10, 2020
Kind
B2
Abstract

The present specification describes an X-ray detector that includes at least one scintillator screen for absorbing incident X rays and emitting corresponding light rays, a wavelength shifting sheet (WSS) coupled with the at least one scintillator screen for shifting the emitted light rays, at least one wavelength shifting fiber (WSF) coupled with at least one edge of the WSS for collecting the shifted light rays, and a photodetector for detecting the collected light rays.

Claims (30)

1. An X-ray detector comprising:

at least one scintillator screen configured to absorb incident X rays and emit corresponding light rays;

a wavelength shifting sheet (WSS) optically coupled with the at least one scintillator screen and configured to collect and spectrum shift the light rays, wherein the WSS has at least one edge;

at least one wavelength shifting fiber (WSF) optically coupled with the at least one edge of the WSS and configured to collect the spectrum shifted light rays and spectrum shift the collected spectrum shifted light rays to generate twice-spectrum-shifted light rays; and

a photodetector optically coupled to the WSF and configured to receive and detect the twice-spectrum-shifted light rays.

2. The X-ray detector of claim 1 wherein the WSS comprises a first and a second surface and wherein the at least one scintillator screen at least partially covers the first surface and a second scintillator screen at least partially covers the second surface.

3. The X-ray detector of claim 2 wherein the first surface is coplanar to the second surface.

4. The X-ray detector of claim 1 wherein the at least one WSF is physically coupled with at least a portion of the edge of the WSS.

5. The X-ray detector of claim 1 wherein the photodetector is a photomultiplier tube (PMT).

6. The X-ray detector of claim 1 further comprising a reflector material covering the WSF to improve the collection of the spectrum shifted light rays.

7. The X-ray detector of claim 6 wherein the reflector material comprises at least one of a diffuse reflector or a specular reflector material.

8. The X-ray detector of claim 1 wherein the at least one scintillator screen comprises a material having an optical absorption length and wherein a thickness of the at least one scintillator screen is less than the optical absorption length.

9. The X-ray detector of claim 1 wherein the at least one scintillator screen comprises BaFCl:Eu.

10. The X-ray detector of claim 1 further comprising a spatially varying attenuating material inserted between the at least one scintillator screen and the WSS, wherein the spatially varying attenuating material is configured to correct a non-uniformity in detection by the photodetector.

11. The X-ray detector of claim 10 wherein the spatially varying attenuating material comprises a plastic substrate printed sheet with absorbing ink on a surface of the plastic substrate printed sheet.

12. The X-ray detector of claim 1 wherein the at least one scintillator screen is coupled with the WSS by placing the at least one scintillator screen over a surface of the WSS and wherein the at least one scintillator screen at least partially covers the surface.

13. An X-ray detector configured to detect X-rays, the detector comprising:

at least one scintillator screen configured to absorb incident X rays and emit light rays based on the absorbed incident X-rays;

a first wavelength shifting sheet (WSS 1 ) coupled with the at least one scintillator screen configured to shift spectra of the light rays, wherein the WSS 1 comprises at least one edge;

a second wavelength shifting sheet (WSS 2 ) coupled with the at least one edge of said WSS 1 and configured to collect the spectra shifted light rays to generate twice-spectrum-shifted light rays; and

a photodetector in optical communication with the WSS 2 and configured to detect the twice-spectrum-shifted light rays.

14. The X-ray detector of claim 13 wherein the WSS 1 comprises a first and a second surface; and wherein the at least one scintillator screen partially covers the first surface and a second scintillator screen partially covers the second surface.

15. The X-ray detector of claim 14 wherein the first surface is coplanar to the second surface.

16. The X-ray detector of claim 13 wherein the photodetector is a photomultiplier tube (PMT).

17. The X-ray detector of claim 13 further comprising a reflector material covering the WSS 2 to improve the collection of the spectra shifted light rays.

18. The X-ray detector of claim 17 wherein the reflector material comprises at least one of a diffuse reflector or a specular reflector material.

19. The X-ray detector of claim 13 wherein the at least one scintillator screen comprises a material having an optical absorption length and wherein a thickness of the scintillator screen is less than the optical absorption length.

20. The X-ray detector of claim 13 wherein the at least one scintillator screen is made of BaFCl:Eu.

21. The X-ray detector of claim 13 further comprising a spatially varying attenuating material inserted between the scintillator screen and the WSS 1 , wherein the spatially varying attenuating material is configured to correct non-uniformity in detection by the photodetector.

22. The X-ray detector of claim 21 wherein the spatially varying attenuating material comprises a plastic substrate printed sheet with absorbing ink on a surface of the plastic substrate printed sheet.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 21, 2019
From: COUTURE, AARON J.; DENKER, JEFFREY M.
To: AMERICAN SCIENCE AND ENGINEERING, INC.
Reel/Frame 049247/0654 →
Continuity (2)
Provisional Application 62687550 · Jun 20, 2018
Related Publication 20190391280A1 · Dec 26, 2019
Cited By (5)
US 12,235,226 US 12,259,518 US 12,270,772 US 12,283,389 US 12,656,520