IP Library Patent Application 17114841
Patent Application
App. No. 17/114,841

DENSE HIGH-SPEED SCINTILLATOR MATERIAL OF LOW AFTERGLOW

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Quick Facts
Patent No.
US None
App. No.
17/114,841
Abstract

The invention relates to an inorganic scintillator material of formula Lu (2-y) Y (y-z-x) Ce x M z Si (1-v) M′ v O 5 , in which: M represents a divalent alkaline earth metal and M′ represents a trivalent metal, (z+v) being greater than or equal to 0.0001 and less than or equal to 0.2; z being greater than or equal to 0 and less than or equal to 0.2; v being greater than or equal to 0 and less than or equal to 0.2; x being greater than or equal to 0.0001 and less than 0.1; and y ranging from (x+z) to 1. In particular, this material may equip scintillation detectors for applications in industry, for the medical field (scanners) and/or for detection in oil drilling. The presence of Ca in the crystal reduces the afterglow, while stopping power for high-energy radiation remains high.

Claims (36)

1 . (canceled)

2 . An inorganic LYSO-type scintillator material comprising Lu, Y, Si, O, Ce, and Ca wherein:

the relative amounts of Lu, Y, Si, O, Ce, and Ca satisfy formula (2):

Lu (2-y) Y (y-z-x) Ce x Ca z SiO 5   (2),

z is greater than or equal to 0.0001 and less than 0.05;

x is greater than or equal to 0.0001 and less than 0.1; and

y is from (x+z) to 1.

3 . The inorganic scintillator material according to claim 2 , wherein z is less than to 0.01.

4 . The inorganic scintillator material according to claim 2 , wherein z is between 0.0002 and 0.001.

5 . The inorganic scintillator material according to claim 2 , wherein x is greater than 0.0001 and less than 0.001.

6 . An inorganic LYSO-type scintillator material comprising Lu, Y, Si, O, Ce, and Ca wherein:

the relative amounts of Lu, Y, Si, O, Ce, and Ca satisfy formula (2):

Lu (2-y) Y (y-z-x) Ce x Ca z SiO 5   (2),

z is greater than or equal to 0.0001 and less than 0.05;

x is greater than or equal to 0.0001 and less than 0.1;

y is from (x+z) to 1; and

the inorganic scintillator material is a single crystal.

7 . The inorganic scintillator material according to claim 6 , wherein z is less than to 0.01.

8 . The inorganic scintillator material according to claim 6 , wherein z is between 0.0002 and 0.001.

9 . The inorganic scintillator material according to claim 6 , wherein x is greater than 0.0001 and less than 0.001.

10 . A radiation detector comprising an inorganic LYSO-type scintillator material comprising Lu, Y, Si, O, Ce, and Ca wherein:

the relative amounts of Lu, Y, Si, O, Ce, and Ca satisfy formula (2):

Lu (2-y) Y (y-z-x) Ce x Ca z SiO 5   (2),

z is greater than or equal to 0.0001 and less than 0.05;

x is greater than or equal to 0.0001 and less than 0.1; and

y is from (x+z) to 1.

11 . The radiation detector according to claim 10 , wherein an inorganic scintillator material is a single crystal.

12 . The radiation detector according to claim 10 , wherein the radiation detector is a positron emission tomography detector.

13 . The radiation detector according to claim 10 , wherein the radiation detector is a time-of-flight positron emission tomography detector.

14 . The radiation detector according to claim 10 , wherein the inorganic scintillator material is coupled to a light detector which produces an electrical signal proportional to a number of light pulses received by the light detector and the intensity of the light pulses received by the light detector.

15 . The radiation detector according to claim 10 , wherein z is less than to 0.01.

16 . The radiation detector according to claim 10 , wherein z is between 0.0002 and 0.001.

17 . The radiation detector according to claim 10 , wherein x is greater than 0.0001 and less than 0.001.

18 . The radiation detector according to claim 12 , wherein z is less than to 0.01.

19 . The radiation detector according to claim 12 , wherein z is between 0.0002 and 0.001.

20 . The radiation detector according to claim 12 , wherein x is greater than 0.0001 and less than 0.001.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2023
From: SAINT-GOBAIN CRISTAUX ET DETECTEURS
To: LUXIUM SOLUTIONS, LLC
Reel/Frame 063066/0758 →