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首页> 外文期刊>Optical Materials >Correlation of EMR and optical spectroscopy data for Cr3+ and Mn2+ ions doped into yttrium aluminum borate YAl3(BO3)(4) crystal - Extracting low symmetry aspects
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Correlation of EMR and optical spectroscopy data for Cr3+ and Mn2+ ions doped into yttrium aluminum borate YAl3(BO3)(4) crystal - Extracting low symmetry aspects

机译:掺入硼酸钇铝YAl3(BO3)(4)晶体中的Cr3 +和Mn2 +离子的EMR和光谱学数据的相关性-提取低对称性方面

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摘要

In this study, the crystal field analysis for Cr3+ and Mn2+ ions doped into yttrium aluminum borate YAl3(BO3)(4), for short YAB, crystal has been carried out to complement earlier study of the zero-field splitting (ZFS) parameters (ZFSPs). This analysis utilizes data on the distortion models obtained from analysis of the ZFSPs obtained experimentally by EMR for Cr3+ and Mn2+ ions at the Y3+ and Al3+ sites in YAB. This approach enables to verify and enhance reliability of the ZFSP modeling based on superposition model (SPM) analysis and the distortion models predicted previously. Subsequently, modeling of the crystal field parameters (CFPs) based on SPM analysis is carried out for Cr3+ and Mn2+ ions located at possible cation sites in YAB. The SPM predicted CFP values serve as input for the Crystal Field Analysis (CFA) package to calculate the CF energy levels. The predicted physical ZFS of the ground spin state, i.e. the (4)A(2) state for Cr3+ ion and the S-6 state Mn2+ ions, enable calculation of the theoretical ZFSP values, D and D & (a-F), respectively, using the microscopic spin Hamiltonian (MSH) module in the CFA package. In this way, data on the distortions around the Cr3+ centers in YAB (and to a certain extent also for Mn2+ centers) obtained using the ZFSP data from EMR measurements may be correlated with data on the CF energy levels measured by optical spectroscopy. This modeling approach uncovers certain incompatibilities in the existing data for Cr3+:YAB, which call for reanalysis of the previous assignments of the energy levels observed in optical spectra and more accurate experimental data. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,对掺入硼酸钇铝YAl3(BO3)(4)中的Cr3 +和Mn2 +离子进行了晶体场分析,为简称YAB进行了晶体分析,以补充对零场分裂(ZFS)参数的早期研究( ZFSPs)。该分析利用了变形模型中的数据,该变形模型是通过EMR对YAB中Y3 +和Al3 +位上的Cr3 +和Mn2 +离子进行EMR实验获得的,该ZFSPs的分析得到了分析。这种方法能够基于叠加模型(SPM)分析和先前预测的失真模型来验证和增强ZFSP建模的可靠性。随后,基于SPM分析对YAB中可能的阳离子位点处的Cr3 +和Mn2 +离子进行了晶体场参数(CFP)建模。 SPM预测的CFP值用作晶体场分析(CFA)软件包的输入,以计算CF能级。基态自旋态的预测物理ZFS,即Cr3 +离子的(4)A(2)状态和S-6状态Mn2 +离子,分别可以计算理论ZFSP值D和D&(aF),使用CFA软件包中的微观自旋哈密顿量(MSH)模块。这样,使用从EMR测量获得的ZFSP数据获得的YAB中Cr3 +中心周围的畸变数据(在一定程度上也适用于Mn2 +中心)可以与通过光谱法测量的CF能级数据相关。这种建模方法揭示了Cr3 +:YAB现有数据中的某些不兼容之处,这要求重新分析光谱中观察到的能级的先前分配以及更准确的实验数据。 (C)2015 Elsevier B.V.保留所有权利。

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