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首页> 外文期刊>Physical review >Ferromagnetic excited-state Mn~(2+) dimers in Zn_(1-x)Mn_xSe quantum dots observed by time-resolved magnetophotoluminescence
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Ferromagnetic excited-state Mn~(2+) dimers in Zn_(1-x)Mn_xSe quantum dots observed by time-resolved magnetophotoluminescence

机译:时间分辨磁光致发光观察到的Zn_(1-x)Mn_xSe量子点中的铁磁激发态Mn〜(2+)二聚体

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摘要

Colloidal Mn~(2+)-doped semiconductor nanocrystals are solution processable analogs of classic phosphor and diluted magnetic semiconductor materials with promising applications ranging from fluorescence microscopy to spintronic information processing. At doping levels of only a few cation mole percent, Mn~(2+) dimers form in appreciable concentration and cause shortened photoluminescence decay times and reduced luminescence circular polarization under applied magnetic fields. Here, we show that these differences allow the use of time-resolved magnetophotoluminescence measurements to investigate the magnetic properties of the luminescent dimer excited state in Zn_(1-x)Mn_xSe nanocrystals. These measurements reveal that Mn~(2+)-Mn~(2+) dimers are coupled ferromagnetically in their luminescent excited state, in contrast with the antiferromagnetic coupling of their ground state. We find that Mn~(2+)-Mn~(2+) dimers also luminesce with much purer circular polarization than Mn~(2+) monomers under applied magnetic fields. These results are explained well by perturbation theory and density functional theory analyses of the microscopic orbital exchange interactions within the photoexcited Mn~(2+)-Mn~(2+) dimers. This discovery of photoswitchable dimer magnetism (from S = 0 to S = 4) with strong associated circularly polarized luminescence raises intriguing possibilities for optical spin manipulation in doped semiconductors.
机译:掺杂有Mn〜(2+)的胶体半导体纳米晶体是经典磷光体和稀释的磁性半导体材料的可溶液处理的类似物,具有从荧光显微镜到自旋电子信息处理的广阔应用前景。在仅几个阳离子摩尔百分数的掺杂水平下,Mn〜(2+)二聚体以可观的浓度形成,并在施加磁场的情况下导致缩短的光致发光衰减时间和减小的发光圆极化。在这里,我们表明这些差异允许使用时间分辨的磁光致发光测量来研究Zn_(1-x)Mn_xSe纳米晶体中发光二聚体激发态的磁性。这些测量结果表明,Mn〜(2 +)-Mn〜(2+)二聚体在其发光激发态下与铁磁耦合,与它们的基态的反铁磁耦合相反。我们发现,在施加磁场的条件下,Mn〜(2 +)-Mn〜(2+)二聚体的发光也比Mn〜(2+)单体更纯净。通过对光激发的Mn〜(2 +)-Mn〜(2+)二聚体中微观轨道交换相互作用的微扰理论和密度泛函理论分析,可以很好地解释这些结果。具有强相关的圆偏振发光的光可开关二聚体磁性(从S = 0到S = 4)的发现为掺杂半导体中的光学自旋操纵提出了有趣的可能性。

著录项

  • 来源
    《Physical review 》 |2014年第11期| 115312.1-115312.11| 共11页
  • 作者单位

    Department of Chemistry, University of Washington, Seattle, Washington 98195-1700, USA;

    Department of Chemistry, University of Washington, Seattle, Washington 98195-1700, USA;

    Department of Chemistry, University of Washington, Seattle, Washington 98195-1700, USA ,Department of Chemistry, University of North Carolina, Chapel Hill;

    Department of Chemistry, University of Washington, Seattle, Washington 98195-1700, USA;

    Department of Chemistry, University of Washington, Seattle, Washington 98195-1700, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    magnetooptical effects; magnetic impurity interactions; magnetic semiconductors;

    机译:磁光效应;磁性杂质相互作用;磁性半导体;

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