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  • 招生学科专业:
    物理学 -- 【招收博士、硕士研究生】 -- 物理学院
    电子信息 -- 【招收硕士研究生】 -- 物理学院
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  • 所在单位:物理学院
  • 学历:中国科学技术大学
  • 办公地点:理学院482
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  • 联系方式:18851870557
  • 学位:理学博士学位
  • 职称:研究员
  • 毕业院校:中国科学技术大学
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Wavelength-Tunable Waveguide Emissions from Electrically Driven Single ZnO/ZnO:Ga Superlattice Microwires
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  • 所属单位:理学院
  • 发表刊物:ACS APPLIED MATERIALS & INTERFACES
  • 关键字:superlattice exciton-polariton heterojunction diode non-equilibrium hot electrons waveguide
  • 摘要:Because of the superlattice structures comprising periodic and alternating crystalline layers, one-dimensional photon crystals can be employed to expand immense versatility and practicality of modulating the electronic and photonic propagation behaviors, as well as optical properties. In this work, individual superlattice microwires (MWs) comprising ZnO and Ga-doped ZnO (ZnO/ZnO:Ga) layers were successfully synthesized. Wavelength-tunable multipeak emissions can be realized from electrically driven single superlattice MW-based emission devices, with the dominant wavelengths tuned from ultraviolet to visible spectral regions. To illustrate the multipeak character, single superlattice MWs were selected to construct fluorescent emitters, and the emission wavelength could be tuned from 518 to 562 nm, which is dominated by Ga incorporation. Especially, by introducing Au quasiparticle film decoration, emission characteristics can further be modulated, such as the red shift of the emission wavelengths, and the multipeaks were strongly modified and split into more and narrower subbands. In particular, electrically pumped exciton-polariton emission was realized from heterojunction diodes composed of single ZnO/ZnO:Ga superlattice MWs and p-GaN layers in the blue-ultraviolet spectral regions. With the aid of localized surface plasmons from Au nanoparticles, which deposited on the superlattice MW, significant improvement of emission characteristics, such as enhancement of output efficiencies, blue shift of the dominant emission wavelengths, and narrowing of the spectral linewidth, can be achieved. The multipeak emission characteristics would be originated from the typical optical cavity modes, but not the Fabry-Perot mode optical cavity formed by the bilateral sides of the wire. The resonant modes are likely attributed to the coupled optical microcavities, which formed along the axial direction of the wire; thus, the emitted photons can be propagated and selected longitudinally. Therefore, the novel ZnO/ZnO:Ga superlattice MWs with a quadrilateral cross section can provide a potential platform to construct multicolor emitters and low-threshold exciton-polariton diodes and lasers.
  • ISSN号:1944-8244
  • 是否译文:
  • 发表时间:2019-03-27
  • 合写作者:Mao, Wangqi,Zhou, Xiangbo,阚彩侠,施大宁
  • 通讯作者:姜明明
  • 发表时间:2019-03-27