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Compact strain-sensitive flexible photonic crystals for sensors

机译:紧凑型应变敏感型柔性光子晶体,用于传感器

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摘要

A promising fabrication route to produce absorbing flexible photonic crystals is presented, which exploits self-assembly during the shear processing of multi-shelled polymer spheres. When absorbing material is incorporated in the interstitial space surrounding high-refractive-index spheres, a dramatic enhancement in the transmission edge on the short-wavelength side of the band gap is observed. This effect originates from the shifting optical field spatial distribution as the incident wavelength is tuned around the band gap, and results in a contrast up to 100 times better than similar but nonabsorbing photonic crystals. An order-of-magnitude improvement in strain sensitivity is shown, suggesting the use of these thin films in photonic sensors.
机译:提出了一种生产吸收性柔性光子晶体的有前途的制造方法,该方法在多壳聚合物球体的剪切加工过程中利用了自组装。当吸收材料掺入高折射率球周围的间隙中时,观察到带隙的短波长侧的透射边缘显着增强。这种影响源于随着入射波长在带隙附近的调谐,光场空间分布的变化,其对比度比类似但不吸收的光子晶体高出100倍。显示了应变灵敏度的数量级改善,表明这些薄膜在光子传感器中的使用。

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