Novel Scintillators Based on Cerium-Doped Garnets in Amorphous Silica: Crystal Quality at the Costs of Glass

30 Pages Posted: 6 Feb 2025

See all articles by Saulius Nargelas

Saulius Nargelas

Vilnius University

Monika Skruodiene

University of Latvia - Institute of Solid State Physics

Arnoldas Solovjovas

Vilnius University

Šarūnas Ščefanavicius

Vilnius University

Gabija Soltanaite

Vilnius University

Žydrūnas Podlipskas

Vilnius University

Aivaras Kareiva

Vilnius University

Gintautas Tamulaitis

Vilnius University

Abstract

A two-step sol-gel procedure is proposed to fabricate low-cost composite scintillators consisting of microcrystalline cerium-doped garnets embedded in a silica matrix. Scintillators containing yttrium aluminum garnet (YAG:Ce) and garnets with partial or complete substitution of Y by Lu (LuYAG:Ce and LuAG:Ce) to improve the stopping power of the scintillator were fabricated and studied. X-ray diffraction (XRD) patterns show that the microcrystals exhibit a garnet structure without significant traces of other crystalline phases. Time-resolved photo- and cathodoluminescence spectroscopy revealed that the luminescence is dominated by the emission of unperturbed Ce³⁺ ions, although a small fraction of the emission centers are modified in LuYAG:Ce and LuAG:Ce. The agglomeration of microcrystals with their increasing content in the composite positively influences the luminescence intensity. Despite the relatively low fabrication temperatures, the microcrystals contain trapping centers that reduce the luminescence rate, as in corresponding bulk crystals.

Keywords: Scintillator, sol-gel technique, luminescence, microcrystals, yttrium aluminum garnets, cerium

Suggested Citation

Nargelas, Saulius and Skruodiene, Monika and Solovjovas, Arnoldas and Ščefanavicius, Šarūnas and Soltanaite, Gabija and Podlipskas, Žydrūnas and Kareiva, Aivaras and Tamulaitis, Gintautas, Novel Scintillators Based on Cerium-Doped Garnets in Amorphous Silica: Crystal Quality at the Costs of Glass. Available at SSRN: https://ssrn.com/abstract=5126291 or http://dx.doi.org/10.2139/ssrn.5126291

Saulius Nargelas (Contact Author)

Vilnius University ( email )

Universiteto 3
Saulėtekio 9
Vilnius
Lithuania

Monika Skruodiene

University of Latvia - Institute of Solid State Physics ( email )

Arnoldas Solovjovas

Vilnius University ( email )

Universiteto 3
Saulėtekio 9
Vilnius
Lithuania

Šarūnas Ščefanavicius

Vilnius University ( email )

Universiteto 3
Saulėtekio 9
Vilnius
Lithuania

Gabija Soltanaite

Vilnius University ( email )

Universiteto 3
Saulėtekio 9
Vilnius
Lithuania

Žydrūnas Podlipskas

Vilnius University ( email )

Universiteto 3
Saulėtekio 9
Vilnius
Lithuania

Aivaras Kareiva

Vilnius University ( email )

Universiteto 3
Saulėtekio 9
Vilnius
Lithuania

Gintautas Tamulaitis

Vilnius University ( email )

Universiteto 3
Saulėtekio 9
Vilnius
Lithuania

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