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Compact Birefringent Waveplates Photo-Induced in Silica by Femtosecond Laser

机译:飞秒激光在二氧化硅中诱导产生的紧凑型双折射波片

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Recently, we showed that femtosecond laser induced “nanogratings” consist of thin regions with a low refractive index (Δn = −0.15), due to the formation of nanoporous silica surrounded by regions with a positive index change. In this paper, we investigate a wide range of laser parameters to achieve very high retardance within a single layer; as much as 350 nm at λ = 546 nm but also to minimize the competing losses. We show that the total retardance depends on the number of layers present and can be accumulated in the direction of laser propagation to values higher than 1600 nm. This opens the door to using these nanostructures as refined building blocks for novel optical elements based on strong retardance.
机译:最近,我们发现飞秒激光诱导的“纳米级”由折射率低的薄区域(Δn= -0.15)组成,这是由于纳米多孔二氧化硅被折射率正变化的区域所包围。在本文中,我们研究了广泛的激光参数,以在单层中实现非常高的延迟。在λ= 546 nm时最大可达350 nm,而且还可以最大程度地减少竞争损耗。我们表明,总延迟取决于存在的层数,并且可以在激光传播的方向上累积到高于1600 nm的值。这就为使用这些纳米结构作为基于强延迟的新型光学元件的精制构建材料打开了大门。

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