Department of Applied Physics, Chalmers University of Technology, 412 96 Göteborg, Sweden.
ACS Nano. 2012 Aug 28;6(8):7533-9. doi: 10.1021/nn302879j. Epub 2012 Jul 23.
Layers of subwavelength metal nanostructures that support localized surface plasmon resonances are of broad interest in applied nanotechnology, for example, in optical sensor development and solar energy harvesting devices. We measured specular reflection spectra as a function of incidence angle for two-dimensional layers of gold nanodisks on glass and found highly asymmetric line-shapes and a spectral red-shift of up to 0.2 eV, or 10% of the plasmon resonance energy, as the angle changed from normal toward grazing incidence. This dramatic angular dispersion is the result of a tunable Fano interference between the spectrally narrow plasmon emission and a "white" continuum caused by the interface reflection. The data are found to be in excellent agreement with predictions based on a theory for Fresnel reflection coefficients of an interface with subwavelength inclusions. The theory can also be used to derive analytical expressions for the Fano parameters.
在应用纳米技术中,支持局域表面等离激元共振的亚波长金属纳米结构层引起了广泛的关注,例如在光学传感器开发和太阳能收集器件中。我们测量了玻璃上二维金纳米盘层的镜面反射光谱作为入射角的函数,发现随着角度从正常向掠入射变化,线形状高度不对称,并且光谱红移高达 0.2eV,即等离子体共振能量的 10%。这种剧烈的角度色散是由于光谱窄的等离子体发射与由界面反射引起的“白色”连续体之间的可调谐 Fano 干涉所致。实验数据与基于亚波长包含物的界面菲涅耳反射系数的理论预测非常吻合。该理论还可用于推导 Fano 参数的解析表达式。