DocumentCode
1303163
Title
Cathodoluminescence and Spatial Variation in Mobility-Lifetime
Product in Bulk Doped Thallium Bromide
Author
Phillips, David J. ; Blaine, Kevin E. ; Cirignano, Leonard J. ; Ciampi, Guido ; Haegel, Nancy M.
Author_Institution
Phys. Dept., Naval Postgrad. Sch., Monterey, CA, USA
Volume
59
Issue
5
fYear
2012
Firstpage
2608
Lastpage
2613
Abstract
Nonuniformity in charge transport properties is a limiting factor in energy resolution of radiation detectors. In this paper, we investigate variations in the low temperature ambipolar diffusion length and the mobility-lifetime (μτ) product in bulk doped TlBr using cathodoluminescence (CL) and transport imaging. One TlBr crystal was doped with sodium (Na), aluminum (Al), and silver (Ag). A second TlBr crystal was doped with copper (Cu), iron (Fe), and zinc (Zn). We report the first low temperature high resolution CL spectroscopy and mapping in bulk doped TlBr, showing spatial variation in recombination luminescence on a scale of ~10 μm. Transport imaging is applied to quantify these variations in TlBr at 5 K. Ambipolar diffusion lengths and μτ products, dominated by the transport of holes, are mapped across a 40 μm segment of TlBr at a resolution of 2 μm. Ambipolar diffusion lengths are found to vary between 4.6 μm and 11.2 μm, on a spatial scale comparable to the variation observed in the CL map.
Keywords
aluminium; carrier lifetime; carrier mobility; cathodoluminescence; copper; gamma-ray spectroscopy; iron; semiconductor counters; semiconductor materials; silver; sodium; thallium compounds; zinc; CL mapping; TlBr crystal; TlBr:Ag; TlBr:Al; TlBr:Cu; TlBr:Fe; TlBr:Na; TlBr:Zn; aluminum; cathodoluminescence; charge transport properties; copper; energy resolution; high resolution CL mapping; high resolution CL spectroscopy; iron; low temperature ambipolar diffusion length; mobility-lifetime product spatial variation; radiation detectors; recombination luminescence scale; silver; size 4.6 mum to 11.2 mum; sodium; spatial scale CL map; spatial variation; transport imaging; zinc; Crystals; Imaging; Impurities; Iron; Luminescence; Zinc; Ambipolar diffusion; cathodoluminescence; mobility-lifetime product; thallium bromide; transport imaging;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2012.2212210
Filename
6316152
Link To Document