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Study of the refractive index of nanostructured optical materials

机译:纳米结构光学材料折射率研究

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Thanks to progresses in photolithography techniques optical materials can now be structured to a scale of a few tens of a nanometer. This has opened a wide field of new applications. When concerned with a scale of some tens of a micron down to a few microns, microlens and integrated optic components can be made. When the material is structured with a scale in the order of the wavelength of light, different filtering functions can be made. This concerns Bragg mirrors or more generally Photonic Crystals. A structuration in a scale small in front of the wavelength is also of a great interest. In this case the material does not diffract the light anymore and it behaves like a homogeneous one. The calculated transmittance of a laser mirror is used to determine the effective index of the single layer equivalent to the multilayer stack. The artificial anisotropy of thin films structured with a one-dimension sub wavelength grating made by holography is measured. The limitation of the first order homogenization theory is given for two different grating steps. Polarizing coatings or polarization rotators are designed to work in normal incidence by inserting anisotropic films in simple multilayer structures.
机译:由于光刻技术的进展技术,光学材料现在可以构造成几十纳米的等级。这已开辟了广泛的新应用领域。当涉及到几十微米的尺度下降到几微米时,可以制造微透镜和集成光学元件。当材料以光的波长的顺序以尺度构造时,可以进行不同的过滤功能。这涉及布拉格镜或更普遍的光子晶体。在波长前面的小的比例中的结构也是很大的兴趣。在这种情况下,材料不再衍射光并且它表现得像是一个均匀的。使用激光镜的计算透射率来确定等于多层堆叠的单层的有效索引。测量通过全息术制备的一维子波长光栅结构的薄膜的人造各向异性。对于两种不同的光栅步骤,给出了第一阶均质化理论的限制。偏振涂层或偏振旋转器设计成通过在简单的多层结构中插入各向异性薄膜来工作。

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