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Plasmon-assisted two-photon absorption in a semiconductor quantum dot-metallic nanoshell composite

机译:半导体量子点金属纳米镍复合材料中的等离子体辅助双光子吸收

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摘要

Two-photon absorption holds potential for many practical applications. We theoretically investigate the onset of this phenomenon in a semiconductor quantum dot-metallic nanoshell composite subjected to a resonant CW excitation. Two-photon absorption in this system may occur in two ways: incoherent-due to a consecutive ground-to-one-exciton-to-hiexciton transition-and coherent-due to a coherent two-photon process, involving the direct ground-to-biexciton transition in the quantum dot. The presence of the nanoshell nearby the quantum dot gives rise to two principal effects: (ⅰ) renormalization of the applied field amplitude and (ⅱ) renormalization of the resonance frequencies and radiation relaxation rates of the quantum dot, both depending on the quantum dot level populations. We show that in the perturbation regime, when the excitonic levels are only slightly populated, each of these factors may give rise to either suppression or enhancement of the two-photon absorption. The complicated interplay of the two determines the final effect. Beyond the perturbation regime, it is found that the two-photon absorption experiences a drastic enhancement, which occurs independently of the type of excitation, either into the one-exciton resonance or into the two-photon resonance. Other characteristic features of the two-photon absorption of the composite, emerging from the coupling between both nanoparticles, are bistability and self-oscillations.
机译:双光子吸收具有许多实际应用的潜力。理论上,从经过共振CW激发的半导体量子点金属纳米壳复合材料中理论上研究了这种现象的发作。该系统中的双光子吸收可能以两种方式发生:不连贯 - 由于连续的邻一兴奋剂到Hiexciton过渡和连贯 - 由于相干的双光子过程,包括直接接地 - 在量子点中的粘性转换。纳米孔附近的存在量子圆点产生了两个主要效果:(Ⅰ)施加的场振幅的重整化和(Ⅱ)对量子点的谐振频率和辐射弛豫率的重新定位,取决于量子点水平人口。我们表明,在扰动制度中,当兴奋水平仅略有填充时,这些因素中的每一个都可能导致抑制或增强双光子吸收。两者的复杂相互作用决定了最终效果。除了扰动制度之外,发现双光子吸收经历了激烈的增强,其独立于激发类型,无论是单兴奋剂共振还是进入双光子共振。从两个纳米颗粒之间的耦合出来的复合材料的两光子吸收的其他特征是双稳态和自振荡。

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  • 来源
    《Physical review 》 |2020年第4期| 045405.1-045405.8| 共8页
  • 作者单位

    Jurusan Fisika Fakultas Matematika dan Ilmu Pengetahuan Alain Universitas Tanjungpura Jl. 78115 Pontianak Indonesia;

    Physics of Magnetism and Photonics Research Group Institut Teknologi Bandung Jl. Ganesa 10 40132 Handung Indonesia;

    University of Groningen Zernike Institute for Advanced Materials Nijenborgh 4 9747 AG Groningen The Netherlands Department of Theoretical Physics and Astronomy Herzen State Pedagogical University 191186 St. Petersburg Russia;

    University of Groningen Zernike Institute for Advanced Materials Nijenborgh 4 9747 AG Groningen The Netherlands;

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