Title :
A time resolution of plastic scintillation detector and its application to positron annihilation spectroscopy
Author :
Nam, K.Y. ; Joo, K.S. ; Oh, E.J. ; Park, T.S. ; Cho, G.S.
Author_Institution :
Dept. of Phys., Myong Ji Univ., Yongin, South Korea
Abstract :
We have measured the effect of the sizes and kinds of scintillators on the time resolution of the fast coincidence system. Two pairs BaF2 scintillation detectors with different sizes and one pair plastic scintillation detector was used in the measurement. After calibrating the TAC (time to amplitude converter), it was obtained that the time resolution of plastic scintillation system was better than others as ~300 ps when measured with 60Co for a 22Na energy window. In addition to that, we recognized that the resolution was dependent of the length of the delay line in the CFD (constant fraction discriminator) panel, neglecting the size of scintillators. We prepared three kinds of Polyaniline and used the fast coincidence system for positron annihilation spectroscopy to measure the positron lifetime. That is, the positron lifetime in solid state Polyaniline was measured as a function of three distinctive conductivities. We obtained the result that the lifetime of the positron decreases with increasing Polyaniline conductivity
Keywords :
positron annihilation; solid scintillation detectors; time measurement; BaF2; BaF2 scintillation detectors; Polyaniline; conductivity; delay line; plastic scintillation detector; positron annihilation spectroscopy; positron lifetime; time resolution; time to amplitude converter; Computational fluid dynamics; Conductivity; Delay lines; Energy measurement; Energy resolution; Plastics; Positrons; Scintillation counters; Size measurement; Time measurement;
Conference_Titel :
Nuclear Science Symposium, 1998. Conference Record. 1998 IEEE
Conference_Location :
Toronto, Ont.
Print_ISBN :
0-7803-5021-9
DOI :
10.1109/NSSMIC.1998.775200