Lu3Al5O12:Ce3+ (LuAG:Ce) is a scintillator with a fast response time. The light yield is lower than theoretically expected and to increase the light yield co-doping with Pr3+ is investigated. To better understand the energy flow to the Ce3+ ion, first low temperature emission and excitation spectra of Pr3+ doped LuAG were investigated, allowing the accurate determination of the zero-phonon lines for the 5d states of Pr3+ in LuAG and the temperature dependent energy transfer from the Self Trapped Exciton to Pr3+. In addition VUV excitation and soft X-ray excited emission spectra of the co-doped LuAG:Ce,Pr were studied. The results show that energy transfer from Pr3+ to Ce3+ occurs but it is followed by back transfer to the 4f states of Pr3+
The work is related to the investigation of scintillation and luminescent properties of single cryst...
The work is related to the investigation of scintillation and luminescent properties of single cryst...
The work is dedicated to the development of scintillating screens based on the single crystalline fi...
Lu3Al5O12 (LuAG) doped with Ce3+ is a promising scintillator material with a high density and a fast...
Lu3Al5O12 (LuAG) doped with Ce3+ is a promising scintillator material with a high density and a fast...
Lu3Al5O12 (LuAG) doped with Ce3+ is a promising scintillator material with a high density and a fast...
Lu3Al5O12 (LuAG) doped with Ce3+ is a promising scintillator material with a high density and a fast...
International audienceThe optical properties of 20Al(PO3)3–80LiF (APLF80) glass co-doped with praseo...
In the present work we studied Pr, Sc co-doped and Eu-doped Lu3Al5O12 thin epitaxial garnet layers p...
In the present work we studied Pr, Sc co-doped and Eu-doped Lu3Al5O12 thin epitaxial garnet layers p...
In the present work we studied Pr, Sc co-doped and Eu-doped Lu3Al5O12 thin epitaxial garnet layers p...
Scintillation properties of LuAG:Pr grown by Furukawa Co. Ltd., Japan, have been studied. The best c...
A detailed investigation on photoluminescence properties and energy transfer (ET) dynamics of Ce<sup...
In this paper we present the studies performed on a set of Lu3Al5O12:Pr (LuAG:Pr) crystals with pras...
Scintillation properties of LuAG:Pr grown by Furukawa Co. Ltd., Japan, have been studied. The best c...
The work is related to the investigation of scintillation and luminescent properties of single cryst...
The work is related to the investigation of scintillation and luminescent properties of single cryst...
The work is dedicated to the development of scintillating screens based on the single crystalline fi...
Lu3Al5O12 (LuAG) doped with Ce3+ is a promising scintillator material with a high density and a fast...
Lu3Al5O12 (LuAG) doped with Ce3+ is a promising scintillator material with a high density and a fast...
Lu3Al5O12 (LuAG) doped with Ce3+ is a promising scintillator material with a high density and a fast...
Lu3Al5O12 (LuAG) doped with Ce3+ is a promising scintillator material with a high density and a fast...
International audienceThe optical properties of 20Al(PO3)3–80LiF (APLF80) glass co-doped with praseo...
In the present work we studied Pr, Sc co-doped and Eu-doped Lu3Al5O12 thin epitaxial garnet layers p...
In the present work we studied Pr, Sc co-doped and Eu-doped Lu3Al5O12 thin epitaxial garnet layers p...
In the present work we studied Pr, Sc co-doped and Eu-doped Lu3Al5O12 thin epitaxial garnet layers p...
Scintillation properties of LuAG:Pr grown by Furukawa Co. Ltd., Japan, have been studied. The best c...
A detailed investigation on photoluminescence properties and energy transfer (ET) dynamics of Ce<sup...
In this paper we present the studies performed on a set of Lu3Al5O12:Pr (LuAG:Pr) crystals with pras...
Scintillation properties of LuAG:Pr grown by Furukawa Co. Ltd., Japan, have been studied. The best c...
The work is related to the investigation of scintillation and luminescent properties of single cryst...
The work is related to the investigation of scintillation and luminescent properties of single cryst...
The work is dedicated to the development of scintillating screens based on the single crystalline fi...