Exploring the Impact of Plasmonic Nanoparticles on Photoluminescence of Er³⁺ - Doped Sodium Zinc Tellurite Glass for Solid-State Laser Applications

Nur Nabihah Yusof, Muhammad Noorazlan Abd Azis, Nurulhuda Mohammad Yusoff
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Abstract

The present work compares the impact of embedding silver (Ag), gold (Au), titanium (Ti), and titanium nitride (TiN) nanoparticles (NPs) on the absorption, photoluminescence, and Judd Ofelt properties of erbium-doped sodium zinc tellurite glass (TNZE), known as reliable solid-state laser media. Ten absorption bands of Er3+ ions in the range of 400-1600 nm are attainable where their bands correspond to their own 4f transitions. Three prominent photoluminescence (PL) bands of Er3+ ions were observed at approximately 525 nm, 545 nm, and 630 nm, corresponding to the transitions 2H11/2®4I15/2, 4S3/2®4I15/2 and 4F9/2®4I15/2, respectively. TZNE with 0.15 mol% of TiN NP inclusion showed the highest PL enhancement factor about 35 times, followed by Ti (17 times), Ag (10 times), and Au NPs (5 times), accordingly. This enhanced PL can be attributed to the strong local field induced by the localized surface plasmon resonance (LSPR) of the plasmonic NPs lies within 490-630 nm, which assists the transitions of Er3+ ions. The Judd Ofelt parameter was calculated and the TNZE glass with 0.15 mol% of TiN NPs inclusion disclosed the highest spectroscopic quality with a value of 3.57, compared to the TNZE glass with Ti (1.19), Au (0.59), and Ag NPs (0.90) inclusions. This research revealed several potential glass compositions with plasmonic nanoparticles that are attractive for the development of solid-state laser materials.
探索等离子纳米粒子对用于固态激光应用的掺杂碲锌酸钠玻璃的光致发光的影响
本研究比较了嵌入银(Ag)、金(Au)、钛(Ti)和氮化钛(TiN)纳米颗粒(NPs)对掺铒碲酸钠锌玻璃(TNZE)的吸收、光致发光和Judd Ofelt性能的影响,TNZE被称为可靠的固态激光介质。Er3+离子在400 ~ 1600 nm范围内有10个吸收带,它们的吸收带对应于它们自身的4f跃迁。Er3+离子在大约525 nm、545 nm和630 nm处观察到三个显著的光致发光(PL)带,分别对应于2H11/2®4I15/2、4S3/2®4I15/2和4F9/2®4I15/2跃迁。含0.15 mol% TiN NP的TZNE的PL增强因子最高,约为35倍,其次是Ti(17倍)、Ag(10倍)和Au NPs(5倍)。这种增强的PL可以归因于等离子体NPs在490-630 nm范围内的局部表面等离子体共振(LSPR)所诱导的强局部场,这有助于Er3+离子的跃迁。计算了Judd offelt参数,发现含有0.15 mol% TiN NPs的TNZE玻璃的光谱质量为3.57,高于含有Ti(1.19)、Au(0.59)和Ag NPs(0.90)的TNZE玻璃。这项研究揭示了几种具有等离子体纳米粒子的潜在玻璃组合物,它们对固体激光材料的发展具有吸引力。
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