Weber Niklas, Spether Dominik, Seifert Andreas, Zappe Hans
Laboratory for Micro-optics, Department of Microsystems Engineering, Georges-Köhler-Allee 102, University of Freiburg, Germany.
J Opt Soc Am A Opt Image Sci Vis. 2012 May 1;29(5):808-16. doi: 10.1364/JOSAA.29.000808.
Employing Bessel beams in imaging takes advantage of their self-reconstructing properties to achieve small focal points while maintaining a large depth of focus. Bessel beams are efficiently generated using axicons, and their utility in scanning imaging systems, such as optical coherence tomography (OCT), has been demonstrated. As these systems are miniaturized to allow, for example, endoscopic implementations, micro-axicons are required to assure the maintenance of a large depth of focus. We demonstrate here the design, fabrication, and application of molded micro-axicons for use in silicon-based micro-optical benches. It is shown that arrangements of multiple convex and concave axicons may be implemented to optimize the depth of focus in a miniaturized OCT system, using a telescopic optical arrangement of considerably shorter optical system length than that achievable with classical micro-optics.
在成像中使用贝塞尔光束利用了它们的自重建特性,以实现小焦点同时保持大景深。使用轴棱锥可以高效地产生贝塞尔光束,并且它们在诸如光学相干断层扫描(OCT)等扫描成像系统中的效用已经得到证明。随着这些系统被小型化以允许例如内窥镜应用,需要微型轴棱锥来确保大景深的维持。我们在此展示了用于硅基微光学平台的模制微型轴棱锥的设计、制造和应用。结果表明,通过使用比传统微光学可实现的光学系统长度短得多的望远光学装置,可以实现多个凸面和凹面轴棱锥的排列,以优化小型化OCT系统中的景深。