2014Bio-Algorithms and Med-SystemsRequires access

Depth of interaction determination with temperature gradient function in continuous bismuth germanate oxide (BGO) crystal

W. Wolszczak

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Abstract

Abstract A method for depth of interaction (DOI) estimation with temperature gradient was considered. Preliminary results covered measurements of bismuth germanate oxide (BGO) monolithic crystal light pulse dependence on temperature. The proof of concept for using temperature gradient as a way to encode DOI incident γ in monolithic BGO crystal was presented.

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Abstract A method for depth of interaction (DOI) estimation with temperature gradient was considered. Preliminary results covered measurements of bismuth germanate oxide (BGO) monolithic crystal light pulse dependence on temperature. The proof of concept for using temperature gradient as a way to encode DOI incident γ in monolithic BGO crystal was presented.

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Available abstract

Abstract A method for depth of interaction (DOI) estimation with temperature gradient was considered. Preliminary results covered measurements of bismuth germanate oxide (BGO) monolithic crystal light pulse dependence on temperature. The proof of concept for using temperature gradient as a way to encode DOI incident γ in monolithic BGO crystal was presented.

Key concepts: Bismuth germanate, Germanate, Temperature gradient, Bismuth, Oxide, Crystal (programming language), Materials science, Optics

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