We report on the laser emission of the polycrystalline ceramic obtained from the full and congruent crystallization of the parent glass 1Nd:75TeO-12.5BiO-12.5NbO composition. In particular, the current work underlines the importance of carefully controlling the heat treatment in order to solely crystallize the BiNbTeO cubic phase and consequently avoid the formation of the BiNbTeO orthorhombic phase that would be detrimental for optical purpose. The structure, microstructure and photoluminescence properties of the resulting transparent tellurite ceramics are characterized. The continuous-wave and gain-switching laser performances reveal that the emission remains perfectly single transversal mode in the range of pump powers explored. The maximum output power achieved was ~28.5 mW, for a pump power threshold of ~67 mW, and with associated efficiency and slope efficiency of ~22.5% and ~50%, respectively. These data definitely stand among the best results obtained so far for bulk laser tellurite materials and thus demonstrate the potential of such polycrystalline transparent ceramics as optically active materials. Finally, the laser emission characteristics in pulsed regime, at low and high repetition rates, are also provided: more than 6.5 W of peak power at a repetition rate of 728 kHz can be obtained.
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http://dx.doi.org/10.1038/s41598-018-22922-5 | DOI Listing |
J Am Chem Soc
March 2024
State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou 350002, P. R. China.
Sulfate crystals are often criticized for their low birefringence. The small anisotropic SO group is becoming the biggest bottleneck hindering the application of sulfates in optical functional materials. In this study, we report a new method to significantly enhance the birefringence of sulfates.
View Article and Find Full Text PDFAdv Sci (Weinh)
March 2024
China-Australia Joint Research Center for Functional Molecular Materials, School of Materials Science and Engineering, Ocean University of China, Qingdao, 266404, China.
Large birefringence is a crucial but hard-to-achieve optical parameter that is a necessity for birefringent crystals in practical applications involving modulation of the polarization of light in modern opto-electronic areas. Herein, an oxyanion polymerization strategy that involves the combination of two different types of second-order Jahn-Teller distorted units is employed to realize giant anisotropy in a covalent molybdenum tellurite. Mo(HO)TeO (MTO) exhibits a record birefringence value for an inorganic UV-transparent oxide crystalline material of 0.
View Article and Find Full Text PDFHeliyon
November 2023
Department of Physics, Sakarya University, Sakarya, Turkey.
Radiation shielding incorporates material between the radioactive source and environment to decrease exposure to hazardous radiation. It remains to be seen whether the addition of nanoparticles effectively increases the protection of tellurite glass system from further degradation under irradiation conditions. This study revealed the gamma radiation effects on tellurite glass.
View Article and Find Full Text PDFAppl Radiat Isot
January 2024
Department of Physics, Sakarya University, Sakarya, Turkey. Electronic address:
The borotellurite glasses whose chemical structure is (29.5-0.4x)CaO + 10CaF + (60-0.
View Article and Find Full Text PDFInorg Chem
October 2023
Tianjin Key Laboratory of Functional Crystal Materials, Institute of Functional Crystal, Tianjin University of Technology, Tianjin 300384, China.
Nonlinear optical (NLO) materials have aroused increasing interest owing to their promising applications in optoelectronic technologies. Herein, we present the synthesis of an acentric niobium tellurite crystal, NbTeO, extracted via a spontaneous crystallization approach. It adopts a unique three-dimensional (3D) structure constructed by the distorted [TeO], [TeO], and [NbO] fundamental building units.
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