Miccio L, Finizio A, Grilli S, Vespini V, Paturzo M, De Nicola S, Ferraro Pietro
Istituto Nazionale di Ottica Applicata (CNR-INOA) & Istituto di Cibernetica del CNR E. Caianiello,Via Campi Flegrei 34 - 80078 Pozzuoli (NA), Italy.
Opt Express. 2009 Feb 16;17(4):2487-99. doi: 10.1364/oe.17.002487.
A special class of tunable liquid microlenses is presented here. The microlenses are generated by an electrowetting effect under an electrode-less configuration and they exhibit two different regimes that are named here as separated lens regime (SLR) and wave-like lens regime (WLR). The lens effect is induced by the pyroelectricity of polar dielectric crystals, as was proved in principle in a previous work by the same authors (S. Grilli et al., Opt. Express 16, 8084, 2008). Compared to that work, the improvements to the experimental set-up and procedure allow to reveal the two lens regimes which exhibit different optical properties. A digital holography technique is used to reconstruct the transmitted wavefront during focusing and a focal length variation in the millimetre range is observed. The tunability of such microlenses could be of great interest to the field of micro-optics thanks to the possibility to achieve focus tuning without moving parts and thus favouring the miniaturization of the optical systems.
本文介绍了一类特殊的可调谐液体微透镜。这些微透镜是在无电极配置下通过电润湿效应产生的,它们呈现出两种不同的状态,在此分别命名为分离透镜状态(SLR)和波状透镜状态(WLR)。透镜效应是由极性介电晶体的热电性引起的,这在同一作者之前的一项工作中已得到原理证明(S. Grilli等人,《光学快报》16,8084,2008)。与该工作相比,实验装置和程序的改进使得能够揭示出具有不同光学特性的两种透镜状态。使用数字全息技术在聚焦过程中重建透射波前,并观察到毫米范围内的焦距变化。由于能够在不移动部件的情况下实现焦点调谐,从而有利于光学系统的小型化,此类微透镜的可调谐性可能在微光学领域引起极大兴趣。