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Effect of Borate and Silicate Glass on Nd3+ iondoped Al2O3-Li2O- P2O5 Glass for Light Sensing Application

机译:硼酸盐和硅酸盐玻璃对Nd 3 + 离子掺杂的Al 2 O 3 -Li 2 O- P < inf> 2 O 5 用于光感测的玻璃

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Nd3+: crystal is widely used as an optical gain medium in many applications such as light sensing, lasing medium, telecommunication, etc. Unfortunately, crystal development is an uneasy fabrication and high-cost production. Nowadays, investigation of glass as a host matrix of the gain medium is more attractive due to their potential for replacing crystal. Nd3+ion-doped various glasses such as B2O3, TeO2, P2O5and SiO2 have been widely investigated. However, the effect of B2O3 and SiO2 in Nd3+ion-doped phosphate glass has not been observed in detail. In this work, glass medium with the formula of 60P2O5:15B2O3:10Al2O3:13Li2O:2Nd2O3 (PBAlLiNd) and 60P2O5:15SiO2:10Al2O3:13Li2O:2Nd2O3 (PSAlLiNd) fabricated by melt and quenching technique. This technique is a simple and inexpensive method so that it is one of the solutions to decrease the cost production. The glass sample was melted at 1200 °C for 180 minutes and annealed at 500 °C for 180 minutes. The physical (density and molar volume), optical, luminescence (excitation and emission spectra) and radiative properties of the glass sample investigated for understanding their sensing and lasing potential. From the collected data, the glass medium strongly emits 1062 nm excited by 582 nm. The prepared glass is suitable for light sensing, especially PSAlLiNd glass due to the higher luminescence intensity. Meanwhile, the radiative properties of PBAlLiNd and PSAlLiNd were determined by the Judd-Ofelt theory. From all results analysis, PSAlLiNd glass possesses a higher stimulated emission cross section and radiative transition probability than PBAlLiNd glass. Therefore, PSAlLiNd glass is a more promising material for 1062 nm laser application. The replacing B2O3 by SiO2 in the phosphate glass system increases the luminescence and radiative properties due to the low phonon energy of SiO2 than B2O3.
机译: 3 + :晶体在许多应用中被广泛用作光学增益介质,例如光感测,激光介质,电信等。不幸的是,晶体的发展是一种不易制造且成本高的产品。如今,由于玻璃具有替代晶体的潜力,因此研究玻璃作为增益介质的基质非常有吸引力。钕 3 + 离子掺杂的各种玻璃,例如B 2 Ø 3 ,TeO 2 P 2 Ø 5 和SiO 2 已经被广泛调查。但是,B的效果 2 Ø 3 和SiO 2 在Nd 3 + 尚未详细观察到离子掺杂的磷酸盐玻璃。在这项工作中,配方为60P的玻璃介质 2 Ø 5 15B 2 Ø 3 :10铝 2 Ø 3 :13李 2 O:2Nd 2 Ø 3 (PBAlLiNd)和60P 2 Ø 5 :15SiO 2 :10铝 2 Ø 3 :13李 2 O:2Nd 2 Ø 3 (PSAlLiNd)通过熔化和淬火技术制造。该技术是一种简单且廉价的方法,因此它是降低成本生产的解决方案之一。将玻璃样品在1200℃下熔融180分钟,并在500℃下退火180分钟。对玻璃样品的物理(密度和摩尔体积),光学,发光(激发和发射光谱)和辐射特性进行了研究,以了解它们的感测和激发激光的潜力。根据收集的数据,玻璃介质会强烈发射出582 nm激发的1062 nm。所制备的玻璃由于较高的发光强度而适合于光感测,尤其是PSAlLiNd玻璃。同时,通过Judd-Ofelt理论确定了PBAlLiNd和PSAlLiNd的辐射性质。从所有结果分析来看,PSAlLiNd玻璃比PBAlLiNd玻璃具有更高的受激发射截面和辐射跃迁几率。所以,PSAlLiNd玻璃是用于1062 nm激光应用的更有前途的材料。替代B 2 Ø 3 通过SiO 2 由于SiO的低声子能量,磷酸盐玻璃系统中的纳米粒子增加了发光和辐射特性 2 比B 2 Ø 3

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