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Tunable focusing properties using optofluidic Fresnel zone plates

机译:使用光流菲涅耳波带片可调聚焦性能

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A Fresnel zone plate (FZP) is a unique diffractive optical device and widely used in integrated optical systems such as interferometers and antennas. A traditional FZP utilizes solid materials and cannot be modulated in real time for desired focusing properties. This paper reports a tunable optofluidic FZP based on a solid-liquid hybrid structure. This FZP consists of two parts including a fast microfluidic mixer, which can adjust the refractive index of liquids from 1.332 to 1.432, and subsequently an optical FZP with a solid-liquid combination. Simulations and experiments successfully showed the real-time tunability of the focusing properties such as peak intensity, focal spot sizes and focal lengths. The focal spot size can be modulated from 16 mu m to 80 mu m at lambda(0) = 532 nm in experiments with focal length changes of approximately 700 mu m. Moreover, it can be easily switched between focusing, defocusing and collimation. The dispersion with different wavelengths was also investigated, showing that these types of focusing properties are quite different from a traditional optofluidic lens by refraction or reflection. It is foreseeable that such a hybrid FZP may find wider applications in lab-on-a-chip systems and optical devices.
机译:菲涅耳波带片(FZP)是一种独特的衍射光学器件,广泛用于诸如干涉仪和天线之类的集成光学系统中。传统的FZP使用固体材料,并且无法针对所需的聚焦特性进行实时调制。本文报道了一种基于固液混合结构的可调光流体FZP。该FZP由两部分组成,其中包括可将液体的折射率从1.332调整到1.432的快速微流体混合器,以及随后具有固液组合的光学FZP。仿真和实验成功地表明了聚焦特性的实时可调性,例如峰强度,焦点尺寸和焦距。在焦距变化大约为700μm的实验中,可以在lambda(0)= 532 nm的情况下将焦点尺寸从16μm调整为80μm。此外,可以轻松地在聚焦,散焦和准直之间切换。还研究了具有不同波长的色散,表明这些类型的聚焦特性在折射或反射方面与传统的光流体透镜有很大不同。可以预见的是,这种混合FZP可以在片上实验室系统和光学设备中找到更广泛的应用。

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