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Spatial Frequency Response of Epoxy-Based Volume Holographic Recording Material

机译:环氧树脂基体积全息记录材料的空间频率响应

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摘要

Holographic volume phase gratings are recorded in an epoxy-based, free-surface, volume holographic recording material. Light-induced gratings are formed by photo-triggered mass migration caused by component diffusion. The material resolution enables a wide range of pattern spacings, to record both transmission and reflection holograms with many different spatial frequencies. An optimum spatial frequency response is found between the low spatial frequency roll-off and the high spatial frequency cut-off. The influence of the energy density of exposure on the spatial frequency response is investigated. Secondary volume holographic gratings (parasitic gratings) are observed in the high frequency range. The possibility of distinguishing the regular grating from the secondary grating is discussed in the form of probe wavelength detuning.
机译:全息体相光栅记录在基于环氧树脂的自由表面体全息记录材料中。光诱发的光栅是由由组分扩散引起的光触发质量迁移形成的。材料分辨率可实现宽范围的图案间距,以记录具有许多不同空间频率的透射和反射全息图。在低空间频率滚降和高空间频率截止之间找到了最佳空间频率响应。研究了曝光能量密度对空间频率响应的影响。在高频范围内观察到二次体积全息光栅(寄生光栅)。以探针波长失谐的形式讨论了将常规光栅与辅助光栅区分开的可能性。

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