In this study, the energy transfer mechanism in Cr,Nd,Yb:YAG (yttrium aluminum garnet) materials was investigated. Based on the emission/excitation spectra and the temporal evolutions of the donor and acceptor ions in Cr,Nd:YAG, Nd,Yb:YAG, and Cr,Nd,Yb:YAG materials, the role of the cascaded Cr3+→Nd3+→Yb3+ energy transfer was elucidated in terms of Yb fluorescence enhancement. The quantum yield balance among Cr, Nd, and Yb fluorescences was determined by solving rate equations, which utilized parameters such as the lifetimes of Cr3+, Nd3+, and Yb3+ ions and the energy transfer parameters related to these materials. The quantum yield for Yb fluorescence was determined to be 35–81% at a Yb concentration of 1–7 at%
The energy transfer between Cr3+ and Nd3+ ions in Cr3+, Nd3+:YAl3(BO3)(4) (YAB) codoped crystals has...
Luminescent materials, also known as phosphors, are widely used in nowadays. Optical technologies, e...
International audienceIn this work, we report the study of energy transfer between Nd3 + and Yb3 + i...
The luminescence properties of Cr3+ ions and the energy transfer between Cr3+ and Nd3+ ions have bee...
Tb3+-Yb3+, Ce3+-Yb3+ and Ce3+-Tb3+-Yb3+ co-doped yttrium aluminum garnets (Y3Al5O12, YAG) were synth...
The emission cross-section, and fluorescence lifetime of Cr,Yb:YAG with different concentration of C...
The Cr3+-Yb3+ codoped YAG crystals were synthesized by the solid state reaction method, in which the...
Broadband spectral conversion from visible light to near-infrared radiation in Ce3+-Nd3+/Yb3+ codope...
Yttrium aluminum perovskite (YAP) co-doped with Cr3+ and Nd3+ is of interest in laser applications b...
We have demonstrated that an efficient energy transfer takes place from Yb3+ to Cr4+ in calcium alum...
Energy transfer induced multifold enhanced emission from Yb3+ is realized in a new series of Cr3+-Yb...
Luminescent materials, also known as phosphors, are widely used in nowadays. Optical technologies, e...
Garnet crystals codoped with Nd3+ and Cr3+ ions are a candidate for solar-pumped laser materials. Su...
Cr3+ multisites, Cr3+ → Nd3+ energy transfer and spectroscopic properties of Cr3+ codoped YAG : Nd a...
Here, Cr3+ sensitized intense luminescence is obtained from Yb3+ ions in a series of newly formulate...
The energy transfer between Cr3+ and Nd3+ ions in Cr3+, Nd3+:YAl3(BO3)(4) (YAB) codoped crystals has...
Luminescent materials, also known as phosphors, are widely used in nowadays. Optical technologies, e...
International audienceIn this work, we report the study of energy transfer between Nd3 + and Yb3 + i...
The luminescence properties of Cr3+ ions and the energy transfer between Cr3+ and Nd3+ ions have bee...
Tb3+-Yb3+, Ce3+-Yb3+ and Ce3+-Tb3+-Yb3+ co-doped yttrium aluminum garnets (Y3Al5O12, YAG) were synth...
The emission cross-section, and fluorescence lifetime of Cr,Yb:YAG with different concentration of C...
The Cr3+-Yb3+ codoped YAG crystals were synthesized by the solid state reaction method, in which the...
Broadband spectral conversion from visible light to near-infrared radiation in Ce3+-Nd3+/Yb3+ codope...
Yttrium aluminum perovskite (YAP) co-doped with Cr3+ and Nd3+ is of interest in laser applications b...
We have demonstrated that an efficient energy transfer takes place from Yb3+ to Cr4+ in calcium alum...
Energy transfer induced multifold enhanced emission from Yb3+ is realized in a new series of Cr3+-Yb...
Luminescent materials, also known as phosphors, are widely used in nowadays. Optical technologies, e...
Garnet crystals codoped with Nd3+ and Cr3+ ions are a candidate for solar-pumped laser materials. Su...
Cr3+ multisites, Cr3+ → Nd3+ energy transfer and spectroscopic properties of Cr3+ codoped YAG : Nd a...
Here, Cr3+ sensitized intense luminescence is obtained from Yb3+ ions in a series of newly formulate...
The energy transfer between Cr3+ and Nd3+ ions in Cr3+, Nd3+:YAl3(BO3)(4) (YAB) codoped crystals has...
Luminescent materials, also known as phosphors, are widely used in nowadays. Optical technologies, e...
International audienceIn this work, we report the study of energy transfer between Nd3 + and Yb3 + i...