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The minimum reflection rate in Fig. 9b decreased to about 0.7% around a wavelength of 300 nm in the UV region, and 5 6% in the visible region.
The minimum reflection rate in Fig. 9a, where the etched depth is around 50 nm, is about 10% in the visible region for 5 wt% concentration with the doubled antireflection efficiency from in Fig. 9b.
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The obtained porous thin films exhibited excellent anti-reflective (AR) performance over visible range with minimum reflection of 0.02%.
Reflection spectrum of ITO shows the minimum reflection of 0.4% at 523 nm while reflection spectrum of TiO2 shows the minimum reflection of 3.5% at 601 nm within the 400- to 1,000-nm 1,000-nm
The minimum reflection loss for the absorber with thickness of 2.1 mm can reach −38.8 dB.
For the minimum reflection, the index of coating must satisfy the condition (1).
This paper presents a model of interface reflection interference in order to determine matching frequency and thickness with minimum reflection loss.
It is found that a proper combination of the front-face reflection and back-face reflection is necessary to produce perfect matching, which leads to global minimum reflection loss.
The efficient absorption bandwidth (reflection loss ≤ −10 dB) reaches 5.59 GHz and the minimum reflection loss is up to −42.9 dB, showing significant increment compared with stacked graphene.
The minimum reflection peaks tended to shift towards the lower frequency region as CIP content or coating thickness increased.
For the as-prepared products a minimum reflection loss (RL) of −42.6 dB was achieved at 8.5 GHz.
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