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Original Research

An Improved Movable 3 photomultiplier (3PM)-γ Coincidence Counter Using Logical Sum of Double Coincidences in β-Channel for Activity Standardization

원문정보

Han Yull Hwang, Jong Man Lee

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초록

영어

Background: To improve the measurement accuracy of liquid-scintillation counting for activity standardization, it is necessary to significantly reduce the background caused by thermal noise or after-pulses. We have therefore improved a movable 3 photomultiplier (3PM)-γ coincidencecounting method using the logical sum of three double coincidences for β events. Materials and Methods: We designed a new data-acquisition system in which β events are obtained by counting the logical sum of three double coincidences. The change in β-detection efficiency can be derived by moving three photomultiplier tubes sequentially from the liquid-scintillation vial. The validity of the method was investigated by activity measurement of 134Cs calibrated at the Korea Research Institute of Standards and Science (KRISS) with 4π(PC)β-γ(NaI(Tl)) coincidence counting using a proportional counter (PC) for the β detector. Results and Discussion: Measurements were taken over 14 counting intervals for each liquidscintillation sample by displacing three photomultiplier tubes up to 45 mm from the sample. The dead time in each β- and γ-counting channel was adjusted to be a non-extending type of 20 μs. The background ranged about 1.2–3.3 s-1, such that the contributions of thermal noise or afterpulses were negligible. As the β-detection unit was moved away from the sample, the β-detection efficiencies varied between 0.54 and 0.81. The result obtained by the method at the reference date was 396.3 ± 1.7 kBq/g. This is consistent with the KRISS-certified value of 396.0 ± 2.0 kBq/g within the uncertainty range. Conclusion: The movable 3PM-γ method developed in the present work not only succeeded in reducing background counts to negligible levels but enabled β-detection efficiency to be varied by a geometrical method to apply the efficiency extrapolation method. Compared with our earlier work shown in the study of Hwang et al. [2], the measurement accuracy has much improved. Consequently, the method developed in this study is an improved method suitable for activity standardization of β-γ emitters.

목차

ABSTRACT
Introduction
Materials and Methods
1. Movable 3PM-γ Apparatus Installed at Mokwon University
2. Data Acquisition Method
3. Sample Preparation
Results and Discussion
1. Validation of Geometrial Efficiency Variation Method
2. Linear Extrapolation of Efficiency Function
3. Selection of the Duration of Dead Time
Conclusion
References

저자정보

  • Han Yull Hwang Department of Fire Protection & Safety Management, Mokwon University, Daejeon, Korea
  • Jong Man Lee Center for Ionizing Radiation, Korea Research Institute of Standards and Science, Daejeon, Korea

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