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Effect of Rare Earth Element Codoping on the Mn Red Emission in Ca and Sr Thiogallates: Focusing on Its Mechanism through Electron Spin Resonance Study of Single Crystals

机译:稀土元素共掺杂对硫代高铝酸盐中钙和锶的锰红光发射的影响:通过单晶电子自旋共振研究其机理

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摘要

The weak Mn~(2+) involved red emission in CaGa_2S_4 can be greatly enhanced by codoping with a suitable rare earth element (REE). To clarify the involved physical mechanism, the actual Mn sites in the host crystal are investigated through electron spin resonance (ESR) measurements of single crystals. Three different patterns of ESR signals with different angular dependences are observed by rotating the magnetic field around the three crystal axes. As a result, three independent sites occupied by the Mn~(2+) ions are confirmed. Based on the experimental finding that the hyper fine constants (HFS) for the three sites are nearly the same, the Mn~(2+) ion sites may be ascribed to the Ca or Ga sites. To finally solve this ascription issue, ESR measurements of Eu~(2+) in CaGa_2S_4 are carried out, where the Eu~(2+) ions have been shown to exclusively substitute at Ca sites. From the similar angular variation of the ESR signals of Eu~(2+) and Mn~(2+) , the Mn substitutional sites are finally determined to be the three Ca ones. A broad ESR signal appearing in the vicinity of the Lande g factor (g = 2.0) suggests the possible presence of Mn clusters. We have to investigate to see whether these may be the actual emission centers.
机译:通过与合适的稀土元素(REE)共掺杂,可以大大增强CaGa_2S_4中涉及红色发射的弱Mn〜(2+)。为了阐明所涉及的物理机制,通过单晶的电子自旋共振(ESR)测量来研究基质晶体中的实际Mn位点。通过绕三个晶轴旋转磁场,可以观察到具有不同角度相关性的三种不同模式的ESR信号。结果,确定了Mn〜(2+)离子占据的三个独立位点。基于三个位点的超精细常数(HFS)几乎相同的实验发现,Mn〜(2+)离子位点可能归因于Ca或Ga位点。为了最终解决该归属问题,对CaGa_2S_4中的Eu〜(2+)进行了ESR测量,其中Eu〜(2+)离子已被证明专门替代Ca位点。从Eu〜(2+)和Mn〜(2+)的ESR信号的相似角度变化,最终确定Mn取代位点为三个Ca。出现在Lande g因子(g = 2.0)附近的宽ESR信号表明可能存在Mn团簇。我们必须进行调查,看看是否可能是实际的排放中心。

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  • 来源
    《Japanese journal of applied physics》 |2011年第5issue3期|p.05FG01.1-05FG01.4|共4页
  • 作者单位

    Department of Physics, College of Humanities and Sciences, Nihon University, Setagaya, Tokyo 156-8550, Japan;

    Department of Physics, College of Humanities and Sciences, Nihon University, Setagaya, Tokyo 156-8550, Japan;

    Department of Electrical Engineering, Faculty of Engineering, Tokyo University of Science, Chiyoda, Tokyo 102-0073, Japan;

    Department of Physics, College of Humanities and Sciences, Nihon University, Setagaya, Tokyo 156-8550, Japan;

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