Serveur d'exploration sur le thulium

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Transfert radiatif And NotI. R. Martin

List of bibliographic references

Number of relevant bibliographic references: 5.
Ident.Authors (with country if any)Title
000599 H. Lin [République populaire de Chine] ; X. Y. Wang [République populaire de Chine] ; C. M. Li [République populaire de Chine] ; H. X. Yang [République populaire de Chine] ; E. Y. B. Pun [Hong Kong] ; S. Tanabe [Japon]Near-infrared emissions and quantum efficiencies in Tm3+ -doped heavy metal gallate glasses for S-and U-band amplifiers and 1.8 μm infrared laser
000645 Andrea S. S. De Camargo [Brésil] ; Idelma A. A. Terra [Brésil] ; Luiz Antonio De O. Nunes [Brésil] ; M. Siu Li [Brésil]Energy transfer processes in Yb3+-Tm3+ co-doped sodium alumino-phosphate glasses with improved 1.8 μm emission
000650 F. Lahoz [Espagne] ; D. P. Shepherd [Royaume-Uni] ; J. S. Wilkinson [Royaume-Uni] ; M. A. Hassan [Royaume-Uni]Efficient blue upconversion emission due to confined radiative energy transfer in Tm3+-Nd3+ co-doped Ta2O5 waveguides under infrared-laser excitation
000E28 W. Ryba-Romanowski [Pologne] ; S. Golłab [Pologne] ; G. Dominiak-Dzik [Pologne] ; M. Zelechower [Pologne] ; J. Gabrys-Pisarska [Pologne]Excited state relaxation dynamics and non-radiative energy transfer in fluoroindate glass singly doped with thulium and doubly doped with thulium and terbium
000E77 Setsuhisa Tanabe [Japon] ; Xian Feng [Japon] ; Teiichi Hanada [Japon]Improved emission of Tm3+-doped glass for a 1.4-μ m amplifier by radiative energy transfer between Tm3+ and Nd3+

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