Optically Stimulated Luminescence (OSL) dosimetry is am-active to the health physics and dosimetry community due to its all-optical character, fast data acquisition and the avoidance of heating the detector. Until recently there was no luminescent material sensitive enough to radiation, and at the same time suitable for stimulation with visible light, for use in this application. However, anion-deficient aluminum oxide doped with carbon (Al2O3:C) appears to be not only an extremely sensitive thermoluminescence (TL) material, but is also well-suited to OSL applications. Several OSL readout protocols have been suggested, including cw-OSL, pulsed OSL (POSL), and "delayed" OSL (DOSL) The paper discusses the physical mechanisms that give rise to the OSL signals and the dependence of these signals upon absorbed dose. Example applications of the use of OSL from Al2O3:C in environmental radiation and ultraviolet-B dosimetry are discussed.
机构:
Amity School of Physical Sciences, Amity University Punjab, Sec-82 A, IT-City, Mohali,140306, IndiaAmity School of Physical Sciences, Amity University Punjab, Sec-82 A, IT-City, Mohali,140306, India
Sharma, Suchinder K.
Nagar, Y.C.
论文数: 0引用数: 0
h-index: 0
机构:
Defense Geoinformatics Research Establishment (DGRE), Sector — 37 A, Chandigarh,160036, IndiaAmity School of Physical Sciences, Amity University Punjab, Sec-82 A, IT-City, Mohali,140306, India
Nagar, Y.C.
Singhvi, A.K.
论文数: 0引用数: 0
h-index: 0
机构:
Physical Research Laboratory, Ahmedabad,380 009, IndiaAmity School of Physical Sciences, Amity University Punjab, Sec-82 A, IT-City, Mohali,140306, India