主动式近红外滤波器具有独立的多孔硅微腔含有液晶

G. Tkachenko, V. Tkachenko, G. Abbate, L. de Stefano, I. Sukhoivanov
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引用次数: 0

摘要

我们提出了一种包含独立多孔硅(PS)多层膜和微腔的干涉滤光片的设计。估计孔径为40 - 70 nm。将PS膜安装在平面玻璃电池中,并浸润向列相液晶(LC)混合物E7。利用LC有效折射率的热依赖性连续调谐结构的谐振波长。在13nm范围内证明了共振的可逆调谐。在假设LC分子构型为径向逸出的情况下,采用Frank自由能方法模拟了LC在向列相的结构光谱。这些光谱与相应的实验数据非常接近。因此,孔径小于100 nm的向列体的内电模型仍然适用。
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Active NIR filter with a free-standing porous silicon microcavity containing liquid crystal
We present the design of an interference filter containing a free-standing porous silicon (PS) multilayer film with a microcavity. The estimated pore diameter is 40 - 70 nm. The PS film is installed into a planar glass cell and infiltrated with a nematic liquid crystal (LC) mixture E7. The resonant wavelength of the structure is continuously tuned using thermal dependence of the LC effective refractive index. The reversible tuning of the resonance in the range of 13 nm is demonstrated. Spectra of the structure with the LC in the nematic phase were simulated using the Frank free energy approach with an assumption of the LC molecular configuration being escaped radial (ER). These spectra are very close to corresponding experimental data. Thus, the ER model for nematics in pores narrower then 100 nm is still applicable.
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