Zhou Wenjun, Mandia David J, Griffiths Matthew B E, Bialiayeu Aliaksandr, Zhang Yang, Gordon Peter G, Barry Seán T, Albert Jacques
Department of Electronics, Carleton University, Ottawa, Ontario, Canada.
Opt Express. 2013 Jan 14;21(1):245-55. doi: 10.1364/OE.21.000245.
The properties of the high order cladding modes of standard optical fibers are measured in real-time during the deposition of gold nanoparticle layers by chemical vapor deposition (CVD). Using a tilted fiber Bragg grating (TFBG), the resonance wavelength and peak-to-peak amplitude of a radially polarized cladding mode resonance located 51 nm away from the core mode reflection resonance shift by 0.17 nm and 13.54 dB respectively during the formation of a ~200 nm thick layer. For the spectrally adjacent azimuthally polarized resonance, the corresponding shifts are 0.45 nm and 16.34 dB. In both cases, the amplitudes of the resonance go through a pronounced minimum of about 5 dB for thickness between 80 and 100 nm and at the same time the wavelengths shift discontinuously. These effects are discussed in terms of the evolving metallic boundary conditions perceived by the cladding modes as the nanoparticles grow. Scanning Electron Micrographs and observations of cladding mode light scattering by nanoparticle layers of various thicknesses reveal a strong correlation between the TFBG polarized transmission spectra, the grain size and fill factor of the nanoparticles, and the scattering efficiency. This allows the preparation of gold nanoparticle layers that strongly discriminate between radially and azimuthally polarized cladding mode evanescent fields, with important consequences in the plasmonic properties of these layers.
在通过化学气相沉积(CVD)沉积金纳米颗粒层的过程中,实时测量标准光纤高阶包层模式的特性。使用倾斜光纤布拉格光栅(TFBG),在形成约200nm厚的层期间,距离纤芯模式反射共振51nm处的径向偏振包层模式共振的共振波长和峰峰值幅度分别偏移0.17nm和13.54dB。对于光谱相邻的方位角偏振共振,相应的偏移分别为0.45nm和16.34dB。在这两种情况下,对于80至100nm之间的厚度,共振幅度经历约5dB的明显最小值,同时波长会发生不连续偏移。根据随着纳米颗粒生长包层模式所感知的不断演变的金属边界条件来讨论这些效应。扫描电子显微镜图像以及对各种厚度的纳米颗粒层的包层模式光散射的观察揭示了TFBG偏振透射光谱、纳米颗粒的晶粒尺寸和填充因子以及散射效率之间的强相关性。这使得能够制备出能强烈区分径向和方位角偏振包层模式倏逝场的金纳米颗粒层,这对这些层的等离子体特性具有重要影响。