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Effect of phonon-plasmon and surface plasmon polaritons on photoluminescence in quantum emitter and graphene deposited on polar crystals

机译:声子-等离激元和表面等离激元对量子发射体和沉积在极性晶体上的石墨烯的光致发光的影响

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摘要

We investigate the light-matter interaction in a quantum emitter and metallic graphene flake (MGF) hybrid system deposited on a polar material. The coupling of surface plasmons in graphene and optical phonons in the polar material produces phonon-plasmon polaritons (PPPs). Similarly, couplings of photons with surface plasmons of graphene produce surface-plasmon polaritons (SPPs). Using the second quantized formulation for SPPs and PPPs interactions and density matrix method, we have calculated photoluminescence of the quantum emitters. It is found that when the exciton energy of the quantum emitter is in resonant with SPP and PPP energies, the photoluminescence in the quantum emitter are enhanced in the terahertz range. The enhancement is due to the transfer of SPP and PPP energies from the graphene flake to the quantum emitter. The energy transfer from graphene to the quantum emitter can be controlled by applying external pump lasers or stress and strain fields. These are interesting findings which can be used to fabricate switches and sensors.
机译:我们研究了沉积在极性材料上的量子发射器和金属石墨烯薄片(MGF)混合系统中的光-质相互作用。石墨烯中的表面等离子体激元和极性材料中的光学声子的耦合产生了声子等离子体激元(PPPs)。类似地,光子与石墨烯的表面等离激元的耦合产生表面等离激元极化子(SPP)。使用SPP和PPPs相互作用的第二个量化公式和密度矩阵法,我们计算了量子发射体的光致发光。发现当量子发射体的激子能量与SPP和PPP能量共振时,量子发射体中的光致发光在太赫兹范围内增强。增强是由于SPP和PPP能量从石墨烯薄片转移到量子发射器。从石墨烯到量子发射器的能量转移可以通过施加外部泵浦激光器或应力和应变场来控制。这些有趣的发现可用于制造开关和传感器。

著录项

  • 来源
    《Journal of Applied Physics》 |2016年第12期|124308.1-124308.6|共6页
  • 作者单位

    Faculty of Science, Holon Institute of Technology, 58102 Holon, Israel,Department of Physics and Astronomy, The University of Western Ontario, London N6A 3K7, Canada;

    Department of Physics and Astronomy, The University of Western Ontario, London N6A 3K7, Canada;

    Faculty of Science, Holon Institute of Technology, 58102 Holon, Israel;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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