Luminescent properties of YAlO3:Mn single crystalline films

► Growth processes of YAlO3:Mn single crystalline films by liquid phase epitaxy method. ► Formation of the different valence state of manganese ions in YAlO3:Mn films. ► Thermoluminescent properties of YAlO3:Mn films under alpha particles and gamma ray excitation. The YAP:Mn single crystalline films...

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Veröffentlicht in:Optical materials 2012-10, Vol.34 (12), p.1979-1983
Hauptverfasser: Zorenko, Yu, Gorbenko, V., Savchyn, V., Kuklinski, B., Grinberg, M., Bilski, P., Gieszczyk, W., Twardak, A., Mandowski, A., Mandowska, E., Fedorov, A.
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container_end_page 1983
container_issue 12
container_start_page 1979
container_title Optical materials
container_volume 34
creator Zorenko, Yu
Gorbenko, V.
Savchyn, V.
Kuklinski, B.
Grinberg, M.
Bilski, P.
Gieszczyk, W.
Twardak, A.
Mandowski, A.
Mandowska, E.
Fedorov, A.
description ► Growth processes of YAlO3:Mn single crystalline films by liquid phase epitaxy method. ► Formation of the different valence state of manganese ions in YAlO3:Mn films. ► Thermoluminescent properties of YAlO3:Mn films under alpha particles and gamma ray excitation. The YAP:Mn single crystalline films (SCF) have been crystallized by liquid phase epitaxy (LPE) method onto YAP substrates. The cathode- (CL) and photo-luminescence (PL) spectra of the YAP:Mn SCF were analyzed for determination of the preferable valence states of manganese ions which are realized in these SCF depending on Mn content in the 0.01–0.81at.% range. The thermoluminescence (TL) properties of YAP:Mn SCF with the different Mn content above the RT range were also examined in comparison with the properties of YAP:Mn single crystal counterpart. We show that YAP:Mn (0.01at.%) SCF possesses effective TL properties both under α-particle and γ-quanta excitation with main TSL peaks at 130 and 195°C. We assume that the different valence states of Mn ions are responsible for their TL properties, e.g. both emission and trapping centers in YAP:Mn are formed mainly by the different valence states of Mn ions.
doi_str_mv 10.1016/j.optmat.2011.12.003
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The YAP:Mn single crystalline films (SCF) have been crystallized by liquid phase epitaxy (LPE) method onto YAP substrates. The cathode- (CL) and photo-luminescence (PL) spectra of the YAP:Mn SCF were analyzed for determination of the preferable valence states of manganese ions which are realized in these SCF depending on Mn content in the 0.01–0.81at.% range. The thermoluminescence (TL) properties of YAP:Mn SCF with the different Mn content above the RT range were also examined in comparison with the properties of YAP:Mn single crystal counterpart. We show that YAP:Mn (0.01at.%) SCF possesses effective TL properties both under α-particle and γ-quanta excitation with main TSL peaks at 130 and 195°C. 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The YAP:Mn single crystalline films (SCF) have been crystallized by liquid phase epitaxy (LPE) method onto YAP substrates. The cathode- (CL) and photo-luminescence (PL) spectra of the YAP:Mn SCF were analyzed for determination of the preferable valence states of manganese ions which are realized in these SCF depending on Mn content in the 0.01–0.81at.% range. The thermoluminescence (TL) properties of YAP:Mn SCF with the different Mn content above the RT range were also examined in comparison with the properties of YAP:Mn single crystal counterpart. We show that YAP:Mn (0.01at.%) SCF possesses effective TL properties both under α-particle and γ-quanta excitation with main TSL peaks at 130 and 195°C. 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The YAP:Mn single crystalline films (SCF) have been crystallized by liquid phase epitaxy (LPE) method onto YAP substrates. The cathode- (CL) and photo-luminescence (PL) spectra of the YAP:Mn SCF were analyzed for determination of the preferable valence states of manganese ions which are realized in these SCF depending on Mn content in the 0.01–0.81at.% range. The thermoluminescence (TL) properties of YAP:Mn SCF with the different Mn content above the RT range were also examined in comparison with the properties of YAP:Mn single crystal counterpart. We show that YAP:Mn (0.01at.%) SCF possesses effective TL properties both under α-particle and γ-quanta excitation with main TSL peaks at 130 and 195°C. We assume that the different valence states of Mn ions are responsible for their TL properties, e.g. both emission and trapping centers in YAP:Mn are formed mainly by the different valence states of Mn ions.</abstract><pub>Elsevier B.V</pub><doi>10.1016/j.optmat.2011.12.003</doi><tpages>5</tpages></addata></record>
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1873-1252
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source ScienceDirect Journals (5 years ago - present)
subjects Crystal structure
Crystallization
Emission
Luminescence
Manganese
Manganese dopant
Manganese ions
Photoluminescence
Single crystalline films
Spectra
Thermoluminescence
YAlO3
title Luminescent properties of YAlO3:Mn single crystalline films
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