CONDENSED MATTER: ELECTRONIC STRUCTURE, ELECTRICAL, MAGNETIC, AND OPTICAL PROPERTIES |
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EMP Formation in the Co(II) Doped ZnTe Nanowires |
Yu-Ting Liu, Li-Peng Hou, Shuang-Yang Zou, Li Zhang, Bian-Bian Liang, Yong-Chang Guo, Arfan Bukhtiar, Muhammad Umair Farooq, Bing-Suo Zou** |
Beijing Key Laboratory of Nanophotonics and Ultrafine Optoelectronics System, Beijing Institute of Technology, Beijing 100081
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Cite this article: |
Yu-Ting Liu, Li-Peng Hou, Shuang-Yang Zou et al 2018 Chin. Phys. Lett. 35 037801 |
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Abstract Co(II) doped ZnTe nanowires are prepared by a thermal evaporation method. The power and temperature dependent micro-photoluminescence spectra of single nanowire demonstrate the double bands near its band edge, and the ferromagnetism behavior for these nanowires is identified. The occurrence of excitonic magnetic polaron (EMP) can account for the second emission band for its higher binding energy and ferromagnetic coupling. This EMP formation in a nanostructure will facilitate to realize magnetic modulation on confined excitons and will find new applications for spinpolarized nanophotonic devices.
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Received: 26 October 2017
Published: 25 February 2018
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PACS: |
78.67.-n
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(Optical properties of low-dimensional, mesoscopic, and nanoscale materials and structures)
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78.67.Uh
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(Nanowires)
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75.75.-c
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(Magnetic properties of nanostructures)
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78.55.Et
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(II-VI semiconductors)
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