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Spectroscopic studies of Dy3+ ions doped barium lead alumino fluoro borate glasses

机译:DY3 +离子的光谱研究掺杂钡铅铝氟硼玻璃

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摘要

Barium lead alumino fluoro borate (BaPbAlFB) glasses doped with Dy3+ ions were prepared by using melt quenching technique and characterized using various spectroscopic techniques to understand their usage in photonic devices. The SEM and EDX spectral studies were performed on the as prepared glasses to understand the glassy nature and elemental analysis respectively. The weight loss in the BaPbAlFB glass has been studied by the TGA. Judd-Ofelt (J-O) theory has been applied to the measured oscillator strengths of the absorption spectral features to evaluate radiative parameters for the prominent emission transitions of Dy3+ ions in BaPbAlFB glasses. The photoluminescence (PL) spectral measurements show concentration quenching beyond 1.0 mol% of Dy3+ ions in the as prepared glasses. The decay profiles observed for higher concentration of Dy3+ ions in these glasses are well fitted to Inokuti-Hirayama (IeH) model to understand the energy transfer mechanism involved in the as prepared glasses. The experimental lifetimes (t(exp)) measured from the decay spectral features are correlated with radiative lifetime (t(R)) values to understand the quantum efficiency (eta) of the as prepared glasses. From the PL spectra, colorimetric parameters such as CIE coordinates, correlated color temperature (CCT) and yellow-to-blue (Y/B) intensity ratios have been estimated to understand the usage of these glasses in photonic devices such as white LEDs and lasers. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过使用熔融淬火技术制备掺杂有DY3 +离子的钡铅铝氟硼酸硼(BAPBALFB)玻璃,并用各种光谱技术表征以了解它们在光子器件中的使用。在制备玻璃上进行SEM和EDX光谱研究,以了解玻璃状性质和元素分析。通过TGA研究了Bapbalfb玻璃中的体重减轻。 judd-ofelt(J-O)理论已应用于吸收光谱特征的测量振荡器强度,以评估Bapbalfb玻璃中Dy3 +离子的显着发射转变的辐射参数。光致发光(PL)光谱测量显示在制备玻璃中超过1.0mol%的Dy3 +离子的浓度猝灭。观察到这些玻璃中较高浓度Dy3 +离子的衰减型材适合于Inokuti-Hirayama(IEH)模型,以了解作为制备玻璃中涉及的能量转移机制。从衰减光谱特征测量的实验寿命(T(EXP))与辐射寿命(T(R))值相关,以了解作为制备玻璃的量子效率(ETA)。从PL光谱,据估计,诸如CIE坐标,相关色温(CCT)和黄色至蓝(Y / B)强度比的比色参数估计以了解这些玻璃在白光LED和激光器等光子器件中的使用。 (c)2019 Elsevier B.v.保留所有权利。

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