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The thickness of gold layer was determined by the atomic force microscopy study.
Thereby, a maximized absorption of light exceeding 99% is accomplished, of which up to about 93% occurs in a volume-equivalent thickness of gold of only 1.6 nm.
The thickness of gold used on the photodiode was around 125 Å, where 58% of light transmission was carried out.
Here the proposed model is investigated how phase matching points are varied with changing parameters as like diameter, PML, thickness of gold (Au), sensing layer and pitch.
We analyze the effects of the lattice parameters and the thickness of gold layer on the beam splitting by the finite element method.
The position and size of the little air holes along with the thickness of gold film showed influence on the polarization filter properties.
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The experimental mechanics investigations describe the relationships of the initiation/evolvement of surface morphology upon gold/shape memory PS bilayer with respects to various settings, such as the thicknesses of gold films, the applied strain on polymer layer, etc.
Figure 1 Dependence of the thicknesses of gold film sputtered on glass.
The transmission spectra with a 500-nm-diameter Au/PS sphere in the arrays are shown in Figure5 for different thicknesses of gold shells.
With the aim of investigating the effect of the Au thickness on the self-assembled Au droplets, various thicknesses of gold films were deposited at a growth rate of 0.5 Å/s with the ionization current of 3 mA as a function of time.
(The thickness of both gold A and gold B is 92 nm; the width of both gold A and gold B is 92 nm; the thickness of polymer is 110 nm; the period is 1395 nm) Fig. 5 a Reflection spectrum of the plasmonic metasurface shown in Fig. 2.
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