Valev V K, Clercq B D, Zheng X, Denkova D, Osley E J, Vandendriessche S, Silhanek A V, Volskiy V, Warburton P A, Vandenbosch G A E, Ameloot M, Moshchalkov V V, Verbiest T
Molecular Electronics and Photonics, INPAC, Katholieke Universiteit Leuven, Celestijnenlaan 200 D, B-3001 Leuven, Belgium.
Opt Express. 2012 Jan 2;20(1):256-64. doi: 10.1364/OE.20.000256.
While it has been demonstrated that, above its resolution limit, Second Harmonic Generation (SHG) microscopy can map chiral local field enhancements, below that limit, structural defects were found to play a major role. Here we show that, even below the resolution limit, the contributions from chiral local field enhancements to the SHG signal can dominate over those by structural defects. We report highly homogeneous SHG micrographs of star-shaped gold nanostructures, where the SHG circular dichroism effect is clearly visible from virtually every single nanostructure. Most likely, size and geometry determine the dominant contributions to the SHG signal in nanostructured systems.
虽然已经证明,在其分辨率极限以上,二次谐波产生(SHG)显微镜可以绘制手性局部场增强图,但在该极限以下,发现结构缺陷起主要作用。在这里我们表明,即使在分辨率极限以下,手性局部场增强对SHG信号的贡献也可能超过结构缺陷的贡献。我们报告了星形金纳米结构的高度均匀的SHG显微照片,其中几乎从每个纳米结构都能清楚地看到SHG圆二色性效应。很可能,尺寸和几何形状决定了纳米结构系统中对SHG信号的主要贡献。