DocumentCode :
808542
Title :
Enhanced columnar structure in CsI layer by substrate patterning
Author :
Jing, Tao ; Cho, G. ; Drewery, J. ; Fujieda, I. ; Kaplan, S.N. ; Mireshghi, A. ; Perez-Mendez, V. ; Wildermuth, D.
Author_Institution :
Lawrence Berkeley Lab., California Univ., CA, USA
Volume :
39
Issue :
5
fYear :
1992
fDate :
10/1/1992 12:00:00 AM
Firstpage :
1195
Lastpage :
1198
Abstract :
An approach to the fabrication of a scintillation layer by forming a sequence of columns of regular, controlled size perpendicular to the substrate, which provides a high light collimation property, thereby improving the resolution of the radiation detection is reported. The preparation and morphology of CsI on these patterned substrates are described. The optical properties of evaporated CsI(TI) layers, such as line spread function, transmission and modulation transfer function, are discussed. The results obtained with 200-μm-thick CsI layers coupled to a linear photodiode array with 20 dots/mm resolution showed that the spatial resolution of CsI(TI) evaporated on patterned substrates was about 75 μm (FWHM, whereas that of CsI(TI) on flat substrates was about 220 μm FWHM. Micrographs taken by scanning electron microscopy revealed that these layers retained the well-defined columnar structure originating from substrate patterns. Adhesion and light transmission of CsI(TI) were also improved by patterning the substrate
Keywords :
caesium compounds; scanning electron microscopy; scintillation counters; CsI layer; adhesion; enhanced columnar structure; evaporated CsI(TI); light collimation; light transmission; line spread function; linear photodiode array; modulation transfer function; morphology; optical properties; radiation detection; scanning electron microscopy; scintillation layer; spatial resolution; substrate patterning; Couplings; Lighting control; Morphology; Optical collimators; Optical device fabrication; Optical modulation; Radiation detectors; Size control; Spatial resolution; Transfer functions;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/23.173177
Filename :
173177
Link To Document :
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