Title :
Potassium strontium iodide: A new high light yield scintillator with 2.4% energy resolution
Author :
Stand, L. ; Zhuravleva, M. ; Lindsey, Aaron ; Melcher, Charles L.
Author_Institution :
Scintillation Mater. Res. Center, Univ. of Tennessee, Knoxville, TN, USA
fDate :
Oct. 27 2013-Nov. 2 2013
Abstract :
A new ternary metal halide scintillator, potassium strontium iodide, activated with divalent europium (KSr2I5:Eu) has been discovered. This material has a monoclinic crystal structure with a density of 4.39 g/cm3. Differential scanning calorimetry indicates a congruent melting point of 471°C and suggests that this compound has no solid-solid phase transitions. As is the case with most metal halides, the material is hygroscopic, and it has some internal radioactivity due to the presence of 40K. Single crystals of 13 and 25 mm diameter of KSr2I5 doped with 4% Eu2+ were grown in evacuated quartz ampoules via the Bridgman technique. X-ray excited emission consisted of a single peak at ~452 nm due to the 5d-4f transition in Eu2+. The measured light yield is ~94,000 photons/MeV with an energy resolution of 2.4% at 662 keV.
Keywords :
crystal growth from melt; crystal structure; differential scanning calorimetry; melting point; potassium compounds; radioactivity; solid scintillation detectors; strontium compounds; 5d-4f transition; Bridgman technique; KSr2I5; X-ray excited emission; congruent melting point; differential scanning calorimetry; electron volt energy 662 keV; energy resolution; europium; evacuated quartz ampoule; high light yield scintillator; hygroscopic material; monoclinic crystal structure; radioactivity; size 13 mm; size 25 mm; temperature 471 degC; ternary metal halide scintillator; Crystals; Educational institutions; Energy resolution; Strontium; Wavelength measurement; Bridgman technique; Scintillator; metal halide; single crystal growth;
Conference_Titel :
Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC), 2013 IEEE
Conference_Location :
Seoul
Print_ISBN :
978-1-4799-0533-1
DOI :
10.1109/NSSMIC.2013.6829652