Pranav Kumar A, Hima Bindu S, Naveenkumar K, Bongurala Prakash, Venkateswara Rao P, Klement Róbert, Galusek Dušan, Syam Prasad P
Department of Physics, National Institute of Technology Warangal, Warangal 506004, Telangana, India; Bharat Electronics Ltd, Pune 411021, Maharastra, India.
Department of Physics, Chalapathi Institute of Technology, A.R.Nagar, Mothadaka, Guntur, Andhra Pradesh, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2024 Apr 15;311:123940. doi: 10.1016/j.saa.2024.123940. Epub 2024 Feb 1.
Glasses activated with europium show promising potential for use in applications relating to photonics, in particular solid-state laser generation. In the current work, EuO incorporated gemanium borate glasses were developed and explored their potentiality towards lasing active medium by probing physical, structural, optical and lasing properties in detail. The physical and structural features of each glass indicated the presence of non-bridging oxygens (NBOs) and an enhancement in network stability on account of the inclusion of europium ions into the GeO glass network. Optical energy band gaps, E, E, n, S, and λ values were obtained by absorption spectra and found to be increased with europium content. The sequence of Judd-Ofelt (JO) intensity parameters (Ω, Ω, and Ω) exhibited the trend Ω > Ω > Ω, and it confirmed the covalent nature of the as-developed glasses. 1 mol% EuO doped glasses exhibited the highest photoluminescence, quantum efficiency and fluorescence intensity ratio (R). The decay profiles showed single exponential nature for D state of Eu ions and their lifetime values were calculated. The results amply demonstrated the viability of the manufactured glasses as a potential solid-state active laser medium, with the CIE diagram confirming the intense red color emission as seen from the PL spectra.
用铕激活的玻璃在光子学相关应用中,特别是在固态激光产生方面显示出有前景的潜力。在当前工作中,开发了掺入氧化铕的锗硼酸盐玻璃,并通过详细探究其物理、结构、光学和激光特性来探索它们作为激光活性介质的潜力。每种玻璃的物理和结构特征表明存在非桥氧(NBOs),并且由于铕离子掺入GeO玻璃网络中,网络稳定性增强。通过吸收光谱获得了光学能带隙、E、E、n、S和λ值,发现它们随着铕含量的增加而增大。贾德 - 奥费尔特(JO)强度参数(Ω、Ω和Ω)的顺序呈现出Ω > Ω > Ω的趋势,这证实了所开发玻璃的共价性质。掺杂1 mol%氧化铕的玻璃表现出最高的光致发光、量子效率和荧光强度比(R)。衰减曲线显示铕离子D态具有单指数性质,并计算了它们的寿命值。结果充分证明了所制造的玻璃作为潜在固态活性激光介质的可行性,CIE图证实了从PL光谱中看到的强烈红色发射。