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Photoluminescence of single gold nanorods following nonlinear excitation

机译:非线性激励之后的单金纳芯片的光致发光

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The photoluminescence (PL) mechanisms of gold nanorods following nonlinear excitation are described. Using single-particle nonlinear optical measurements, we compare PL signals resulting from both the plasmon-resonant and non-resonant excitations. In both cases, spectrally broad interband PL emission was observed. However, we also show that resonant excitation of the longitudinal plasmon mode leads to an increased photonic density of states at energies corresponding to the transverse plasmon resonance. This increased density of states is achieved by a multi-step mechanism, which is initiated by three-photon excitation and followed by an Auger relaxation process. Importantly, the results show that nonlinear excitation can lead to energy and polarization modulation of nanoparticle optical signals that are not observed using linear excitation. This work also demonstrates the effectiveness of single-nanoparticle PL studies for understanding how plasmon-resonant excitations can be used to modify hot carrier distributions.
机译:描述了非线性激发之后的金纳米棒的光致发光(PL)机构。使用单粒子非线性光学测量,我们比较来自等离子体谐振和非共振激励的PL信号。在这两种情况下,观察到光谱宽的间带布PL发射。然而,我们还显示,纵向等离子体模式导致的的共振激发在对应于横向等离子共振能量增加状态的光子密度。通过多步机构实现这种状态的增加的密度,该多步机构由三光子激发引发,然后是螺旋钻​​松弛过程。重要的是,结果表明,非线性激励可导致使用线性激发未观察到的纳米颗粒光学信号的能量和偏振调制。这项工作还证明了单纳米粒子PL研究的有效性,了解对等离子体共振激发如何用于改变热载体分布的方法。

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