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Lower and upper boundary limits are apparent for dip positions equal to 0.5 and 1, respectively.
FDTD simulations showed that the dip positions corresponded to the geometric optical resonance wavelengths of the Si NPs.
The obtained model satisfies the upper and lower bounds of dip positions equal to 0.5 and 1, respectively.
The employed fitting asymptotic technique has allowed matching the lower and upper boundaries of dip positions equal to 0.5 and 1, respectively.
The numerically simulated results show that the dip positions of the transmission spectrum have linear relationships with the refractive index of the material under sensing and the ambient temperature, respectively.
As shown in Fig. 3b, the FDTD-calculated spectra look similar to the experimental results for the three kinds of samples, when the overall magnitude and local dip positions are compared.
Similar(54)
Dimensionless dip position.
Location of dip position (m).
Z-windows are used as variable windows by varying the side-lobe dip position.
Figure 2 plots the relationship between the aspect ratio and velocity dip position.
Open image in new window Fig. 4 Comparison with velocity dip position formula.
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