首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Spectroscopic properties of Er3+ doped bismuth leadtelluroborate glasses for 1.53 mu m optical amplifiers
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Spectroscopic properties of Er3+ doped bismuth leadtelluroborate glasses for 1.53 mu m optical amplifiers

机译:1.53μm光放大器用掺Er3 +的碲酸铋碲硼酸铋玻璃的光谱性质

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A new series of Er3+ doped bismuth leadtelluroborate glasses with the composition 25TeO(2) + 10H(3)BO(3) + 30PbO + (25 - x)Bi2O3 + 10CdO + xEr(2)O(3) were prepared by varying the Er3+ ion content following melt quenching technique and their spectroscopic behaviours were studied through XRD, SEM, EDS, FTIR, Raman, absorption, luminescence and decay measurements. The local structure around the Er3+ ions were investigated using phonon side band (PSB) spectra and their phonon modes are correlated with the FTIR and Raman spectral measurements. The Judd-Ofelt (JO) theory has been applied to interpret the local environment of the Er3+ ion site and covalency of the Er-O bond. The various lasing parameters such as stimulated emission cross-section (sigma(E)(p)), experimental and calculated branching ratios (beta(R)) and radiative lifetime (tau(cal)) have been calculated for the S-4(3/2) -> I-4(15/2) and I-4(13/2) -> I-4(15/2) emission transitions. The luminescence intensity decreases with the increase in Er3+ ion concentration beyond 0.5 wt% and the same was discussed through various energy transfer mechanism take place between Er3+ ions. The absorption and emission cross-section for the I-4(13/2) -> I-4(15/2) transition (1.532 mu m) were calculated using McCumbar theory and compared with the reported Er3+ doped glasses. Further, the results obtained from the McCumbar theory also found to be in good agreement with the results obtained from JO theory. The gain coefficient (G) of the 1.532 mu m emission band also calculated using absorption and emission cross-sections to explore the suitability of the prepared glasses for broad band amplification. The decay curves of the I-4(13/2) level have been measured and the fall in lifetime value with the increase in Er3+ ion content can be attributed to the cross-relaxation between Er3+ ions to the free OH radical and non-radiative rate through the OH content and the same has been discussed and compared with the reported Er3+ doped glasses. The decay curves have been analysed through Inokuti-Hirayama model to identify the nature of the energy transfer among the Er3+ ions and the electrostatic dipole-dipole interactions are responsible for the dominant energy transfer takes place between Er3+-Er3+ ions. (C) 2014 Elsevier B.V. All rights reserved.
机译:制备了一系列新的Er3 +掺杂的铋碲酸铋铋玻璃,其组成为25TeO(2)+ 10H(3)BO(3)+ 30PbO +(25-x)Bi2O3 + 10CdO + xEr(2)O(3)。通过XRD,SEM,EDS,FTIR,拉曼,吸收,发光和衰变测量研究了熔融淬火技术后的Er3 +离子含量及其光谱行为。使用声子边带(PSB)光谱研究了Er3 +离子周围的局部结构,其声子模式与FTIR和拉曼光谱测量结果相关。 Judd-Ofelt(JO)理论已被用于解释Er3 +离子位点的局部环境和Er-O键的共价性。已经为S-4(S)计算了各种激光参数,例如受激发射截面(sigma(E)(p)),实验和计算的分支比(beta(R))和辐射寿命(tau(cal))。 3/2)-> I-4(15/2)和I-4(13/2)-> I-4(15/2)发射过渡。发光强度随着Er3 +离子浓度的增加而降低,超过0.5 wt%,并且通过Er3 +离子之间发生的各种能量转移机制进行了讨论。使用McCumbar理论计算I-4(13/2)→I-4(15/2)跃迁的吸收和发射截面(1.532微米),并将其与报道的掺Er3 +的玻璃进行比较。此外,从McCumbar理论获得的结果也与从JO理论获得的结果非常吻合。还使用吸收和发射截面计算了1.532μm发射带的增益系数(G),以探究所制备玻璃在宽带放大中的适用性。测量了I-4(13/2)能级的衰减曲线,并且随着Er3 +离子含量的增加,寿命值的下降可归因于Er3 +离子与自由OH自由基和非辐射自由基之间的交叉松弛OH含量的比率已经讨论过,并且与报道的掺Er3 +的玻璃比较。通过Inokuti-Hirayama模型分析了衰变曲线,以识别Er3 +离子之间能量转移的性质,静电偶极-偶极相互作用是Er3 + -Er3 +离子之间主要能量转移的原因。 (C)2014 Elsevier B.V.保留所有权利。

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