Title :
Gamma spectra resolving based on differential function analysis
Author :
Tian Chenyang; Guo Huiping; Zhao Kuo; Lv Ning; Ma Wenyan; Lv Wenhui; Li Jinjun; Xu Peng; Zuo Guangxia
Author_Institution :
Xi´an Research Institute of Hi-Tech, 710025, China
fDate :
7/1/2015 12:00:00 AM
Abstract :
Generally, people use Monte Carlo and Geant4 methods to simulate the interactions of gamma photons with the detectors (NaI(Tl), Ge(Li), HPGe and so on), to calculate the response function of detecting system. But when they make separate lines of the measured spectra, energy peaks are hard to simulate for noise signals. In order to including noise signals from the statistical fluctuation of the detector, we designed some special differential functions to measure the gamma energy change for scattering effects, and to better record the accumulated counts in a constant energy region. We interpolated the ideal spectra with the use of designed differential functions. We presented some simulation results, which show that differential functions are effective even in energy spectra with low counts.
Keywords :
"Detectors","Photonics","Energy resolution","Gamma-rays","Energy measurement","Mathematical model","Semiconductor device measurement"
Conference_Titel :
Electronic Measurement & Instruments (ICEMI), 2015 12th IEEE International Conference on
DOI :
10.1109/ICEMI.2015.7494185