Racu Andrei, Stef Marius, Buse Gabriel, Nicoara Irina, Vizman Daniel
Faculty of Physics, West University of Timisoara, 4 Bd.V. Parvan, 300223 Timisoara, Romania.
National Institute of Research & Development for Electrochemistry and Condensed Matter-INCEMC Timisoara, 144 Aurel Păunescu-Podeanu Street, 300569 Timisoara, Romania.
Materials (Basel). 2021 Jul 28;14(15):4221. doi: 10.3390/ma14154221.
The influence of erbium ion concentration on the optical properties of BaF:ErF crystals was investigated. Four ErF concentration (0.05, 0.08, 0.15 and 0.5 mol% ErF)-doped BaF crystals were obtained using the Bridgman technique. Room temperature optical absorption in the 250-850 nm spectral range was measured, and the photoluminescence (PL) and decay times were also investigated. The Judd-Ofelt (JO) approximation was used, taking into account four absorption peaks (at 377, 519, 653 and 802 nm). The JO intensity parameters, Ω ( = 2, 4, 6), were calculated. The influence of the ErF concentration on the JO parameters, branching ratio, radiative transition probability and radiative lifetime were studied. The obtained results were compared with measured values and with those reported in the literature. Under excitation at 380 nm, the well-known green (539 nm) and red (668 nm) emissions were obtained. The calculated and experimental radiative lifetimes were in millisecond range for green and red emissions. The intensity of the PL spectra varied with the Er ion concentration. The emission intensity increased linearly or exponentially, depending on the ErF concentration. Under excitation at 290 nm, separate to the green and red emissions, a new UV emission band (at 321 nm) was obtained. Other research has not reported the UV emission or the influence of ErF concentration on emission behavior.
研究了铒离子浓度对BaF:ErF晶体光学性质的影响。采用布里奇曼技术制备了四种铒氟化物浓度(0.05、0.08、0.15和0.5 mol% ErF)掺杂的BaF晶体。测量了250 - 850 nm光谱范围内的室温光吸收,并对光致发光(PL)和衰减时间进行了研究。使用Judd-Ofelt(JO)近似,考虑了四个吸收峰(377、519、653和802 nm处)。计算了JO强度参数Ω( = 2、4、6)。研究了ErF浓度对JO参数、分支比、辐射跃迁概率和辐射寿命的影响。将所得结果与测量值以及文献报道的值进行了比较。在380 nm激发下,获得了众所周知的绿色(539 nm)和红色(668 nm)发射。绿色和红色发射的计算和实验辐射寿命在毫秒范围内。PL光谱的强度随铒离子浓度而变化。发射强度根据ErF浓度呈线性或指数增加。在290 nm激发下,除了绿色和红色发射外,还获得了一个新的紫外发射带(321 nm处)。其他研究尚未报道紫外发射或ErF浓度对发射行为的影响。