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首页> 外文期刊>Journal of Applied Physics >Energy-level structure and spectral analysis of Nd3+(4f(3)) in polycrystalline ceramic garnet Y3Al5O12
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Energy-level structure and spectral analysis of Nd3+(4f(3)) in polycrystalline ceramic garnet Y3Al5O12

机译:石榴石Y3Al5O12中Nd3 +(4f(3))的能级结构和光谱分析

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A detailed crystal-field splitting analysis is given for the 26 lowest-energy multiplet manifolds, L-2S+1(J), of Nd3+ (4f(3)) in polycrystalline ceramic garnet Y3Al5O12 (YAG). The absorption spectra obtained between 8 K and room temperature, and between 1750 and 350 nm, and the fluorescence spectrum obtained at 8 K and observed between 1450 and 875 nm are analyzed for transitions between individual energy (Stark) levels that characterize the energy-level structure of Nd3+ ions in D-2 symmetry sites, replacing Y3+ ions in the garnet host lattice. A model Hamiltonian including atomic and crystal-field terms is diagonalized within the complete 4f(3) SLJM(J) basis set which includes 364 states. The calculated splitting of the Nd3+ energy levels by the crystal field is compared with the experimental splitting observed in both the ceramic sample and a single-crystal laser rod. Both samples have approximately the same Nd3+ concentration, about 1 at. %. By varying the atomic and crystal-field parameters, we obtain a standard deviation of 18 cm(-1) between 106 calculated-to-observed Stark levels found between the ground state and the D-4(1/2) at 28 369 cm(-1). Within this standard deviation the energy-level structure of Nd3+ is found to be similar in both samples. Low temperature visible and near IR spectra of ceramic Nd3+:YAG show it has comparable properties to the crystalline analog. (C) 2004 American Institute of Physics.
机译:对多晶陶瓷石榴石Y3Al5O12(YAG)中Nd3 +(4f(3))的26个最低能量多重多重流形L-2S + 1(J)进行了详细的晶体场分裂分析。分析了在8 K和室温之间以及1750和350 nm之间获得的吸收光谱,以及在8 K和1450和875 nm之间观察到的荧光光谱,以分析表征该能级的各个能量(Stark)能级之间的跃迁D-2对称位点中Nd3 +离子的结构,取代了石榴石主体晶格中的Y3 +离子。在包括364个状态的完整4f(3)SLJM(J)基集中,对角线化了一个包含原子和晶体场项的模型哈密顿量。将计算出的Nd3 +能级在晶体场上的分裂与在陶瓷样品和单晶激光棒中观察到的实验分裂进行比较。两个样品的Nd3 +浓度大致相同,约为1 at。 %。通过改变原子和晶体场参数,我们获得了在28 369 cm的基态与D-4(1/2)之间发现的106个计算得出的斯塔克能级之间的标准差18 cm(-1)。 (-1)。在此标准偏差内,发现两个样品中Nd3 +的能级结构相似。陶瓷Nd3 +:YAG的低温可见光和近红外光谱表明,它具有与晶体类似物相当的性能。 (C)2004美国物理研究所。

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