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首页> 外文期刊>Journal of Applied Physics >Crystal field disorder effects in the optical spectra of Nd3+ and Yb3+-doped calcium lithium niobium gallium garnets laser crystals and ceramics
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Crystal field disorder effects in the optical spectra of Nd3+ and Yb3+-doped calcium lithium niobium gallium garnets laser crystals and ceramics

机译:掺杂Nd 3 + 和Yb 3 + 的钙锂铌镓石榴石激光晶体和陶瓷光谱中的晶场无序效应

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The optical spectroscopic properties of RE3+ (Nd, 1 at. % or Yb, 1 to 10 at. %)-doped calcium-lithium-niobium-gallium garnet (CLNGG) single crystals and ceramics in the 10 K–300 K range are analyzed. In these compositionally disordered materials, RE3+ substitute Ca2+ in dodecahedral sites and the charge compensation is accomplished by adjusting the proportion of Li+, Nb5+, and Ga3+ to the doping concentration. The crystals and ceramics show similar optical spectra, with broad and structured (especially at low temperatures) bands whose shape depends on temperature and doping concentration. At 10 K, the Nd3+ 4I9/2 → 4F3/2, 5/2 and Yb3+ 2F7/2 → 2F5/2 absorption bands, which show prospect for diode laser pumping, can be decomposed in several lines that can be attributed to centers with large differences in the crystal field. The positions of these components are the same, but the relative intensity depends on the doping concentration and two main centers dominate the spectra. Non-selective excitation evidences broad emission bands, of prospect for short-pulse laser emission, whereas the selective excitation reveals the particular emission spectra of the various centers. The modeling reveals that the nonequivalent centers correspond to RE3+ ions with different cationic combinations in the nearest octahedral and tetrahedral coordination spheres, and the most abundant two centers have 4Nb and, respectively, 3Nb1Li in the nearest octahedral sphere. At 300 K, the spectral resolution is lost. It is then inferred that the observed optical bands are envelopes of the spectra of various structural centers, whose resolution is determined by the relative contribution of the temperature-dependent homogeneous broadening and the effects of crystal field disordering (- ulticenter structure, inhomogeneous broadening). The relevance of spectroscopic properties for selection of pumping conditions and of laser design that would enable utilization of the broad optical bands for efficient laser emission and reduced heat generation is discussed.
机译:掺杂有RE 3 + (Nd,1 at。%或Yb,1至10 at。%)的钙-锂-铌-镓石榴石(CLNGG)掺杂的单晶和陶瓷的光谱性质分析10 K–300 K范围。在这些成分无序的材料中,十二面体位点上的RE 3 + 替代Ca 2 + ,并且通过调节Li + 的比例来实现电荷补偿。 ,Nb 5 + 和Ga 3 + 达到掺杂浓度。晶体和陶瓷显示相似的光谱,具有宽且结构化的波段(尤其是在低温下),其形状取决于温度和掺杂浓度。在10 K时,Nd 3+ 4 I9 / 2→ 4 F3 / 2,5/2和Yb 3+ 2 F7 / 2 →显示二极管激光泵浦前景的 2 F5 / 2吸收带可以分解为几条线,这些线可以归因于晶体场的中心差异很大。这些成分的位置相同,但是相对强度取决于掺杂浓度,两个主要中心控制光谱。非选择性激发证明了较宽的发射带,具有短脉冲激光发射的前景,而选择性激发则揭示了各个中心的特定发射光谱。该模型表明,非等价中心对应于最近的八面体和四面体配位球中具有不同阳离子组合的RE 3 + 离子,最丰富的两个中心在最近的八面体中分别具有4Nb和3Nb1Li球。在300 K时,光谱分辨率下降。然后可以推断出,所观察到的光带是各种结构中心光谱的包络,其分辨率取决于温度相关的均匀展宽和晶体场无序效应的影响(多中心结构,不均匀展宽)。讨论了光谱特性与泵浦条件的选择和激光设计的相关性,这将能够利用宽的光学波段来有效地发射激光并减少热量的产生。

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