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The introduction of 1 nm Si on top of the Be layers in each period increases the reflection up to 61% at normal incidence.
The gold layer increases the reflection coefficient at the NAA-medium interface and improves the FI.
When the gold nanoparticle further increases to 80 nm, the efficiency drops as the scattering effect increases the reflection of NWAs and reduces the absorptance spectrum just like Fig. 4 shows.
This is explainable when we consider that the narrow LSPR resonance properties of Ag NPs only occurs for the visible wavelengths and that the backscattering of NPs at mid-infrared wavelengths increases the reflection of a-Si, as shown in Figure 3a.
Continuous-wave (CW) laser heating of tissue via gold nanorods increases the reflection of a scanning THz beam used for two-dimensional imaging in a microscopic setup enabling detection of cells containing the particles [ 5].
At low frequency, foams behave similarly to metals and, when the density increases, the reflection increases and the absorption decreases.
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The increase in spacing between the plates was also found to increase the reflection coefficient.
By increasing the reflection of solar radiation and interfering with the conduction of heat from the ground, it induces a cold climate.
Leaf and stem trichomes increase the reflection of solar radiation, thereby reducing internal temperatures, and thus reduce water loss in plants growing under arid conditions.
The c-axis shrinks slightly with increasing the reflection intensities of (0 0 l) planes when l=odd.
That is, it will decrease the output power, lower the beam current, decrease the X-ray dose rate, increase the reflection power, and result in unstable operation of the accelerator.
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