The homogeneous line width of the1D2-3H4 electronic transition of Pr3+ in ZBLAN and gallium-lanthanum-sulphide (GLS) glass has been determined at 1.9 K by means of hole burning. In ZBLAN the holes show a variation in burning efficiency dependent on probe wavelength. Site-selective fluorescence results are presented to explain this effect
Spectroscopic properties and room-temperature persistent spectral hole burning mechanisms of Eu3+-do...
Due to their narrow homogeneous linewidths, rare-earth ions in inorganic crystals at low temperature...
The optical communications network requires an efficient and cost effective 1.3 µm optical fibre-amp...
Fluorescence and efficient persistent spectral hole burning of Eu3+ at 77 K were observed in chalcoh...
Spectroscopic investigations using high-resolution techniques of two novel rare-earth doped glasses ...
International audienceVisible transitions in the blue, green, and red of Pr3+ ions are of interest f...
Fluorescence spectra of Pr3+-doped gallium lanthanum sulphide (GLS) chalcogenide glass at 300 and 1....
Nonphotochemical hole burning in the absorption spectra of impurity molecules dissolved in amorphous...
Optical properties of Eu3+ in glassy Ge-Ga-S-MX (MX = alkali halide) materials were investigated. An...
This paper details measurements of 1.0 µm 3H4 to 1G4 absorption and site selective studies of the 1....
Persistent spectral hole burning was observed at room temperature in Eu3+-doped Al2O3-SiO2 glass. Th...
The results of photochemical hole burning and nonphotochemical hole burning studies are reported for...
For elucidation of the glass composition's influence on the spectroscopic properties in the chalcoha...
Persistent spectral hole burning (PSHB) in the 7F0-5D0 transition and the electron excitation in t...
Absorption and fluorescence spectra of Nd3+ were measured in potassium tantalum gallate, lead bismut...
Spectroscopic properties and room-temperature persistent spectral hole burning mechanisms of Eu3+-do...
Due to their narrow homogeneous linewidths, rare-earth ions in inorganic crystals at low temperature...
The optical communications network requires an efficient and cost effective 1.3 µm optical fibre-amp...
Fluorescence and efficient persistent spectral hole burning of Eu3+ at 77 K were observed in chalcoh...
Spectroscopic investigations using high-resolution techniques of two novel rare-earth doped glasses ...
International audienceVisible transitions in the blue, green, and red of Pr3+ ions are of interest f...
Fluorescence spectra of Pr3+-doped gallium lanthanum sulphide (GLS) chalcogenide glass at 300 and 1....
Nonphotochemical hole burning in the absorption spectra of impurity molecules dissolved in amorphous...
Optical properties of Eu3+ in glassy Ge-Ga-S-MX (MX = alkali halide) materials were investigated. An...
This paper details measurements of 1.0 µm 3H4 to 1G4 absorption and site selective studies of the 1....
Persistent spectral hole burning was observed at room temperature in Eu3+-doped Al2O3-SiO2 glass. Th...
The results of photochemical hole burning and nonphotochemical hole burning studies are reported for...
For elucidation of the glass composition's influence on the spectroscopic properties in the chalcoha...
Persistent spectral hole burning (PSHB) in the 7F0-5D0 transition and the electron excitation in t...
Absorption and fluorescence spectra of Nd3+ were measured in potassium tantalum gallate, lead bismut...
Spectroscopic properties and room-temperature persistent spectral hole burning mechanisms of Eu3+-do...
Due to their narrow homogeneous linewidths, rare-earth ions in inorganic crystals at low temperature...
The optical communications network requires an efficient and cost effective 1.3 µm optical fibre-amp...