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It showed good transparency in the visible-near infrared spectral range, and the maximum transmittance reached as high as 89%.
For tri-layer AR film, the maximum transmittance reached nearly 100% at both the central wavelengths of 527 and 1053 nm.
The dual-layer film demonstrates good stability with 99.8% at the central wavelength of 351 nm and nearly 99.5% at the central wavelength of 1053 nm in laser system, and for the tri-layer AR film, the maximum transmittance reached nearly 100% at both the central wavelengths of 527 and 1053 nm.
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The maximum transmittance of coatings reached as high as 95.3% at the wavelength of 630 nm, whereas the water contact angle was 153° with sliding angle ⩽5° by applying of the A2/B/MSN2 coating.
According to this figure, the transmittance of the ITO thin films increased with decrease of the coating number until 3 times, reached the maximum transmittance of more than 90%% and then decreased to lower degrees with addition of the coating number.
Also, the maximum transmittance is lower due to the effect of the wide-band pass filter and photodiode.
Film C (maximum transmittance of 69%) showed a slightly higher transmittance at the region of 400-580 nm compared with film B (maximum transmittance of 65%) (Figure 8).
This design has many advantages, including high maximum transmittance (>90%), high transmittance contrast ratio, low power threshold, short response time (picosecond level), ease of integration.
A multilayer thin-film structure with the maximum transmittance can be designed using the Macleod software.
The CdTe sample of 1 SPD cycle showed maximum transmittance compared to other samples as expected.
A multilayer thin-film structure with maximum transmittance can be designed using the Macleod simulation software.
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