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Rewritable VPHGs based on photochromic materials

机译:基于光致变色材料的可重写VPHG

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摘要

Volume phase holographic gratings (VPHGs) are becoming an interesting alternative to the ruled gratings in modern astronomical instrumentation. Photochromic materials with thermal stability are good candidates for the development of holographic optical elements and in particular for VPHGs. VPHGs based on photochromic materials can be written and erased many times without the degradation of the material; moreover the material does not need any developing process after the exposure, making the writing process very simple. We have already studied photochromic materials for this aim in the framework of the JRA6 (Opticon Project, FP6) and we found that large modulations of the refractive index can be achieved using diarylethene polymers. Going from the materials characterization to technology, substrates with larger thickness and good optical properties are required. Herein we present the development of new technique to tailor the thickness of the photochromic films in two ranges: 5-30 micron and 700 - 1000 micron. The former are suitable for the development of broadband VPHGs, whereas the latter are suitable for narrow band tunable filters application. Details on the optical properties of the films are reported. Finally, a holographic set-up based on an Ar+ laser has been optimized in order to write the gratings.
机译:体积相全息光栅(VPHG)成为现代天文仪器中刻线光栅的一种有趣替代方法。具有热稳定性的光致变色材料是开发全息光学元件,尤其是VPHG的良好选择。基于光致变色材料的VPHG可以多次写入和擦除,而不会降低材料的质量。而且,该材料在曝光后不需要任何显影过程,这使得书写过程非常简单。我们已经在JRA6(光学图标计划,FP6)的框架内为此目的研究了光致变色材料,并且发现使用二芳基乙烯聚合物可以实现较大的折射率调节。从材料表征到技术发展,需要具有更大厚度和良好光学性能的基板。本文中,我们介绍了新技术的发展,以在两个范围内调整光致变色膜的厚度:5-30微米和700-1000微米。前者适用于宽带VPHG的开发,而后者适用于窄带可调滤波器的应用。报道了膜的光学性质的细节。最后,基于Ar +激光的全息设置已得到优化,以便写入光栅。

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