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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Control of Self-Kerr Nonlinearity in a Driven Coupled Semiconductor Quantum Dot-Metal Nanoparticle Structure
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Control of Self-Kerr Nonlinearity in a Driven Coupled Semiconductor Quantum Dot-Metal Nanoparticle Structure

机译:驱动耦合半导体量子点纳米粒子结构中的自克尔非线性的控制

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The self-Kerr nonlinear optical response of a probe field is investigated in the presence of a near-resonant pump field in coupled metal nanoparticle (MNP)-semiconductor quantum dot (SQD) nanostructures. The study of the spectra is based on the solution of the resulted density matrix equations for the case of a colloidal CdSe-based SQD-(Au)MNP molecule, as well as for an epitaxial SQD structure coupled to an Au nanoparticle. It is demonstrated that below a critical value of the interparticle distance the susceptibility of each distinct component of the structure exhibits a characteristic single-resonance spectrum, whereas above this value, the spectrum has three resonances. This phenomenon can be understood in terms of the theory of exciton-plasmon quantum metastates. In addition, the conditions under which optical transparency occurs with a concurrent positive self-phase-modulation coefficient are also identified.
机译:在偶联金属纳米颗粒(MNP) - 血液导电电脑点(SQD)纳米结构的近谐振泵场的存在下研究了探针场的自克隆非线性光学响应。 光谱的研究基于用于基于胶体CDSE的SQD-(AU)MNP分子的所得密度矩阵方程的溶液,以及偶联与Au纳米颗粒的外延SQD结构。 结果证明,在颗粒间距离的临界值以下,结构的每个不同组分的敏感性表现出特征单谐振谱,而高于该值,光谱具有三个共振。 在激子 - 血管量子迁移的理论方面可以理解这种现象。 另外,还识别了通过并发正自相调制系数发生光学透明度的条件。

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