Effect of Nd2O3and Na2O concentration on physical and spectroscopic properties of TeO2-Bi2O3-ZnO-Na2O-Nd2O3glasses

被引:6
作者
Marzuki, Ahmad [1 ]
Pramuda, Adi [2 ]
Fausta, Devara Ega [1 ]
机构
[1] Sebelas Maret Univ, Dept Phys, Surakarta 57126, Indonesia
[2] PGRI Inst Educ, Dept Phys Educ, Pontianak 78116, Indonesia
关键词
Tellurite glasses; glass density; Judd-Ofelt analysis; branching ratios; spectroscopic quality; Nd-doped glasses; JUDD-OFELT ANALYSIS; MU-M EMISSION; ND3+ IONS; FLUOROALUMINATE GLASSES; OPTICAL-PROPERTIES; PHOSPHATE-GLASSES; TELLURITE; LUMINESCENCE; FLUORESCENCE; INTENSITIES;
D O I
10.1088/2053-1591/ab8b89
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Two series of tellurite glasses with molar compositions of (55TeO(2)-2Bi(2)O(3)-(41-x) ZnO-2Na(2)O-xNd(2)O(3)(x = 0.5, 1.0, 1.5, 2.0 and 2.5) and 55TeO(2)-2Bi(2)O(3)-(41-x) ZnO-xNa(2)O-2Nd(2)O(3)(x = 1.0, 2.0, 3.0, 4.0, 5.0) were fabricated using melt quenching technique. Based on the measured densities, refractive indices and absorption spectra, physical and spectroscopic properties of these two-glass series are evaluated and compared. Whereas substitution of ZnO by Nd(2)O(3)causes the values of density and refractive index increase, the substitution of ZnO by Na2O has been shown to impact the glass density and refractive index in the opposite manner. Molar volume of both series increases with an increase of either Nd(2)O(3)or Na2O concentrations. In this regard, a dynamical model explaining the density and molar volume was proposed. Additionally, Judd-Ofelt theory was applied in order to predict the physical and laser properties of the two glasses series as a function of glass compositions, i.e., Judd-Ofelt parameters omega(t)(t = 2, 4, 6), branching ratios (beta), calculated lifetimes (tau), the emission to exited state absorption intensity ratio (A(em)/A(ESA)) and spectroscopic quality chi = omega(4)/omega(6). Equations to relate chi with branching ratios for laser transitions(4)F(3/2)to(4)I(J')(withJ ' = 9/2, 11/2, 13/2 and 15/2) were also derived.
引用
收藏
页数:12
相关论文
共 43 条
[1]   Investigation of the spectroscopic properties of Nd3+-doped phosphate glasses [J].
Ajroud, M ;
Haouari, M ;
Ben Ouada, H ;
Maaref, H ;
Brenier, A ;
Garapon, C .
JOURNAL OF PHYSICS-CONDENSED MATTER, 2000, 12 (13) :3181-3193
[2]   Modelling consideration of praseodymium-doped fiber amplifiers for 1.3 μm wavelength applications [J].
Berkdemir, Cuneyt ;
Ozsoy, Sedat .
OPTICS COMMUNICATIONS, 2007, 269 (01) :102-106
[3]   Spectroscopy of thulium and holmium co-doped silicate glasses [J].
Cao, Ruijie ;
Lu, Yu ;
Tian, Ying ;
Huang, Feifei ;
Xu, Shiqing ;
Zhang, Junjie .
OPTICAL MATERIALS EXPRESS, 2016, 6 (07) :2252-2263
[4]  
Carnall W.T., 1978, Energy level structure and transition probabilities in the spectra of the trivalent lanthanides in LaF3, DOI DOI 10.2172/6417825
[5]   Luminescence study and Judd-Ofelt analysis of CaO-BaO-P2O5 glasses doped with Nd3+ ions [J].
Chanthima, N. ;
Kaewkhao, J. ;
Tariwong, Y. ;
Sangwaranatee, N. ;
Sangwaranatee, N. W. .
MATERIALS TODAY-PROCEEDINGS, 2017, 4 (05) :6091-6098
[6]   Judd-Ofelt analysis of spectroscopic properties of Nd3+-doped novel fluorophosphate glass [J].
Choi, JH ;
Margaryan, A ;
Margaryan, A ;
Shi, FG .
JOURNAL OF LUMINESCENCE, 2005, 114 (3-4) :167-177
[7]   Ce3+/Yb3+/Er3+ triply doped bismuth borosilicate glass: a potential fiber material for broadband near-infrared fiber amplifiers [J].
Chu, Yushi ;
Ren, Jing ;
Zhang, Jianzhong ;
Peng, Gangding ;
Yang, Jun ;
Wang, Pengfei ;
Yuan, Libo .
SCIENTIFIC REPORTS, 2016, 6
[8]   Spectroscopic properties of Nd3+-doped tungsten tellurite glasses [J].
Costa, F. B. ;
Yukimitu, K. ;
Nunes, L. A. O. ;
Figueiredo, M. S. ;
Andrade, L. H. C. ;
Lima, S. M. ;
Moraes, J. C. S. .
JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS, 2016, 88 :54-59
[9]   Time resolved luminescence in (Tm:Ho) doped tellurite glass [J].
da Vila, LD ;
Gomes, L ;
Eyzaguirre, CR ;
Rodriguez, E ;
Cesar, CL ;
Barbosa, LC .
OPTICAL MATERIALS, 2005, 27 (08) :1333-1339
[10]   Investigations on spectroscopic properties of Nd3+ doped alkali bismuth phosphate glasses for 1.053 μm laser applications [J].
Damodaraiah, S. ;
Prasad, V. Reddy ;
Ratnakaram, Y. C. .
OPTICS AND LASER TECHNOLOGY, 2019, 113 :322-329