首页|(163040)Dehydroxylation processing and lasing properties of a Nd alumino-phosphate glass

(163040)Dehydroxylation processing and lasing properties of a Nd alumino-phosphate glass

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In this work, we have studied the preparation and properties of an alumino-phosphate glass with composition 13Na_2O-13K_2O-16BaO-4Al_2O_3-54P_2O_5 (mol%). The first part of the work deals with the study of the processing conditions of the dehydroxylation of the phosphate glass, which was performed by remelting under N_2 flow using graphite crucibles. Glass samples from 5 to 50 g and Nd_2O_3 doped were submitted to dehydroxylation and the influence of temperature, time, mass of glass and viscosity were correlated with the content of water in the glasses through the coefficient of absorption of OH ions. The network structure of the glasses was also determined by means of ~(31)P and ~(27)A1 1D/2D nuclear magnetic resonance and the local environment of Nd~(3+) ions was probed by electron paramagnetic resonance. The optimized conditions of processing were then used to obtain a dehydroxylated glass with a 2.5 wt% Nd_2O_3 whose spectroscopic and laser emission properties were studied. The spectroscopic properties of Nd~(3+) ions which include, Judd-Ofelt calculation, stimulated emission cross-section of the laser transition, lifetime, and quantum efficiency are presented. Site-selective laser spectroscopy and stimulated emission obtained under selective wavelength pumping along the ~4I_(9/2)→~4F_(5/2) absorption band were performed to determine the distribution of crystal field in which the rare earth is located, together with its influence in the pump wavelength dependence of the spontaneous and laser emissions of Nd~(3+) in this glass matrix.

Phosphate glassesDehydroxylationLaser glassesNeodymium

Monica Munoz-Quinonero、Jon Azkargorta、Ignacio Iparraguirre

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Institute of Ceramics and Glass (CSIC), Kelsen 5, 28049 Madrid, Spain

Applied Physics Department, Faculty of Engineering, University of the Basque Country UPV/EHU, 48013 Bilbao, Spain

2022

Journal of Alloys and Compounds

Journal of Alloys and Compounds

EISCI
ISSN:0925-8388
年,卷(期):2022.896
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