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Near-field Scanning Optical Microscopy: Single Channel Imaging of Selected Gold Nanoparticles Through Two Photon Induced Photoluminescence

机译:近场扫描光学显微镜:通过两个光子诱导光致发光的所选金纳米颗粒的单通道成像

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Near-field scanning optical microscopy (NSOM) is known to be a technique of choice to investigate nanometric materials and their properties beyond far-field diffraction limit resulting high spatial, spectral and temporal resolution. Here in this report, a state of art facility, aperture-NSOM was used to probe single nanoparticle, dimer, trimer and small nanoaggregate of gold nanoparticles. Shear force topography and two photon induced photoluminescence (TPI-PL) images captured simultaneously by the system facilitated to clarify the correlation between the local geometry and the emitted photon of TPI-PL. Small gold aggregates including trimer showed strong optical confinement of TPI-PL with reference to that of single gold nanoparticles. It was also evident that the interparticle gap does have a great influence in localized electromagnetic (EM) field mediated optical confinement of TPI-PL. Such observations were also supported by finite different time domain (FDTD) analysis keeping the simulation parameter nearly identical to that of experiment. FDTD simulation demonstrated that incident excitation parallel to the interparticle axis induces strong near-field distribution at the interstitials whereas out of plane excitation modifies such confinement depending on the nanometric geometry of the nanoaggregates. Such an observation is indispensable to understand the localized EM field-mediated optical confinement in surfaceenhanced spectroscopy.
机译:已知近场扫描光学显微镜(NSOM)是一种选择的技术,以研究纳米材料及其超出远场衍射极限的特性,从而产生高空间,光谱和时间分辨率。这里在本报告中,APERTURE-NSOM的一种艺术设施的状态,用于探测单纳米颗粒,二聚体,三聚体和金纳米颗粒的小纳光凝。通过系统同时捕获的剪切力地形和两个光子诱导的光致发光(TPI-PL)图像,便于阐明局部几何形状与TPI-PL的发射光子之间的相关性。包括三聚体的小金聚集体,并参考单金纳米粒子的TPI-PL的强光学限制。还显然,颗粒间隙确实对局部电磁(EM)介导的TPI-PL的光学限制具有很大的影响。通过有限不同的时域(FDTD)分析,还支持这种观察结果,保持模拟参数几乎与实验相同。 FDTD仿真表明,与颗粒轴线平行的入射激发在间隙上引起强大的近场分布,而超出平面激发,根据纳米聚集的纳米几何形状改变这种限制。这种观察是不可或缺的,以了解在表面型光谱中的局部EM场介导的光学限制。

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