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Resonant scattering-enhanced photothermal microscopy

机译:共振scattering-enhanced光热光谱分析显微镜

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Photothermal (PT) microscopy is currently the most efficient approach for the detection and spectroscopy of individual non-fluorescent nano-objects based solely on their absorption. The nano-objects in current PT microscopy are usually non-resonant with the probe laser light, and the PT signal is mainly generated from the interactions of the incident probe light and the heating light-induced thermal lens around the imaged object. Inspired by the high sensitivity of the scattering field from the nano-objects near optical resonance to the variation in the local refractive index, we developed a novel strategy of resonant scattering-enhanced PT microscopy where the imaged nano-objects are near-resonant with the probe laser light. We have demonstrated this by using gold nanorods (NRs) with tunable longitudinal surface plasmon resonances. The PT signal of gold NR near-resonant with the probe light showed dramatic variation in the narrow resonance wavelength range, as small as 15 nm, and the maximal amplitude of the PT signal in this range can be enhanced up to 43 times as compared with the weak PT signal of gold NR non-resonant with the probe light. Theoretical analysis indicates that the obtained strong PT signal is mainly caused by the heat-induced variation in the polarizability of gold NR. Our novel work demonstrates the first resonant scattering-enhanced PT imaging of plasmonic nanoparticles, paving the way for the development of PT microscopy with ultra-high sensitivity toward the sensing, imaging, and spectroscopy of nanoscopic objects in complex environments.
机译:光热光谱分析(PT)显微镜目前最为检测和有效的方法个人荧光光谱nano-objects完全基于他们的吸收。在当前PT nano-objects显微镜通常与探测器的激光共振,和PT信号主要是产生的交互事件的探测光和加热周围的光致热透镜成像对象。从nano-objects散射场光学共振附近的变化当地的折射率,我们开发了一个小说共振scattering-enhanced PT的策略显微镜成像nano-objects在哪里near-resonant探测激光。演示了通过使用金纳米棒(NRs)可调纵向表面等离子体共振。near-resonant与探测光显示戏剧性的变化在狭窄的共振波长范围,小15海里,在这个范围内最大振幅的PT信号可以增强43倍相比弱者PT的黄金NR共振信号探测光。获得强烈的PT信号主要是由燥热引起的变化引起的极化率的黄金NR。我们的小说作品展示了第一个谐振scattering-enhanced PT成像的电浆纳米颗粒,为发展铺平了道路超高灵敏度的PT显微镜对传感、成像和光谱在复杂环境中纳米对象。

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