Barron Ashleigh L, Kar Ajoy K, Aspray Thomas J, Waddie Andrew J, Taghizadeh Mohammad R, Bookey Henry T
Institute of Photonics and Quantum Sciences, School of Engineering and Physical Sciences, Heriot Watt University, Edinburgh, UK.
Opt Express. 2013 Jun 3;21(11):13199-207. doi: 10.1364/OE.21.013199.
Two dimensional interferometric trapping of multiple microspheres and Escherichia coli has been demonstrated using a multicore fiber lensed with an electric arc fusion splicer. Light was coupled evenly into all four cores using a diffractive optical element. The visibility of the fringes and also the appearance of the lattice can be altered by rotating a half wave-plate. As a result the particles can be manipulated from one dimensional trapping to two dimensional trapping or a variety of different two dimensional arrangements. The ability to align bacterial populations has potential application for quorum sensing, floc and biofilm and, metabolic co-operation studies.
利用电弧熔接机对多芯光纤进行透镜化处理,已实现了对多个微球和大肠杆菌的二维干涉捕获。使用衍射光学元件将光均匀地耦合到所有四个芯中。通过旋转半波片可以改变条纹的可见度以及晶格的外观。结果,粒子可以从一维捕获被操纵到二维捕获或各种不同的二维排列。排列细菌群体的能力在群体感应、絮凝和生物膜以及代谢合作研究方面具有潜在应用。