International audienceA glass-forming domain is found and studied within the Tl2O–TiO2–TeO2 system. Linear and non-linear optical, thermal and mechanical characteristics were measured and/or theoretically estimated for relevant glasses, and found to be very promising for applications in non-linear optical designs. The chemical, lattice-dynamical and structural effects of the Tl2O and TiO2 modifiers are discussed by using the Raman spectroscopy data. It was concluded that the former modifier favours the non-linear optical properties of the glasses, whereas the latter improves their thermal and mechanical stabilities
In this report, effect of enhanced rare earth (La2O3) concentration on substitution of TeO2 within t...
International audienceThe relationships between structure and nonlinear optical response at 1.5 μm i...
International audienceWithin the Bi2O3–XO2–TeO2 (X=Ti, Zr) systems, a large glass-forming domain was...
International audienceA glass-forming domain is found and studied within the Tl2O–TiO2–TeO2 system. ...
International audienceLarge glass forming domains have been identified at 800°C in the Tl2O-TeO2-Bi2...
International audienceWithin the Tl2O-Ag2O-TeO2 system, a large glass-forming domain was evidenced a...
International audienceThe glass-forming domain and physical properties, namely, the density, thermal...
International audienceThird-order nonlinear optical susceptibilities (v(3)) of thallium–tellurite (T...
International audienceA glass-forming domain was evidenced and studied within the TeO2single bondTiO...
International audienceNew tellurite glasses with a large glass forming domain were elaborated within...
Li2O-TiO2-TeO2 glass systems presenting large optical non-linearities are promising materials for op...
In this report, effect of enhanced rare earth (La2O3) concentration on substitution of TeO2 within t...
International audienceThe relationships between structure and nonlinear optical response at 1.5 μm i...
International audienceWithin the Bi2O3–XO2–TeO2 (X=Ti, Zr) systems, a large glass-forming domain was...
International audienceA glass-forming domain is found and studied within the Tl2O–TiO2–TeO2 system. ...
International audienceLarge glass forming domains have been identified at 800°C in the Tl2O-TeO2-Bi2...
International audienceWithin the Tl2O-Ag2O-TeO2 system, a large glass-forming domain was evidenced a...
International audienceThe glass-forming domain and physical properties, namely, the density, thermal...
International audienceThird-order nonlinear optical susceptibilities (v(3)) of thallium–tellurite (T...
International audienceA glass-forming domain was evidenced and studied within the TeO2single bondTiO...
International audienceNew tellurite glasses with a large glass forming domain were elaborated within...
Li2O-TiO2-TeO2 glass systems presenting large optical non-linearities are promising materials for op...
In this report, effect of enhanced rare earth (La2O3) concentration on substitution of TeO2 within t...
International audienceThe relationships between structure and nonlinear optical response at 1.5 μm i...
International audienceWithin the Bi2O3–XO2–TeO2 (X=Ti, Zr) systems, a large glass-forming domain was...