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Updated: Mar 8, 2026

Low-energy Cathodoluminescence for OxyNitride Phosphors
Published on: November 15, 2016
Development of SIRTI at National Institute of Metrology (NIM), China
Aoran Liu1, Zhijie Yang1, Yifan Tian2
1National Institute of Metrology, Beijing, 100029, China.
Abstract:
To strengthen the Mutual Recognition Arrangement (MRA) for short-lived radionuclides, a SIRTI for the Asia-Pacific Metrology Programme (APMP) region has been developed at the NIM, China. A dual-threshold comparator coupled with an FPGA-based counter was developed to replace the MTR2 module and the ORTEC 994 scaler used in the BIPM SIRTI. A 100 MHz clock serves as a frequency standard, enabling simultaneous counting and dead time measurement. A93mNb/94Nb reference source was prepared with high-purity radioactive solution and housed in a plexiglass holder. The 16.6 keV X-ray peak of 93mNb is used to set the lower threshold and to evaluate its stability, whereas the count rate of 94Nb above the threshold serves as a metric for the system's stability and reproducibility. Measurements performed over two months showed that the maximum drift of the threshold position remained within ±2 channels and the relative standard deviation of the 94Nb count rate was 2.7 × 10-4. The medical radionuclides 99mTc, 18F, and 68Ga were measured for duration exceeding seven half-lives. Following rigorous dead time and background corrections, the measured count rate exhibited excellent agreement with the theoretically predicted values after decay correction. For the corrected count-rate interval of 2000 - 20,000 s-1, the maximum non-linearity of the system was determined to be 3.6 × 10-6.

