Pikulin Alexander, Afanasiev Andrei, Agareva Nadezhda, Alexandrov Alexander P, Bredikhin Vladimir, Bityurin Nikita
Institute of Applied Physics, Russian Academy of Sciences, 46 Ul'yanov Street, 603950 Nizhny Novgorod, Russia.
Opt Express. 2012 Apr 9;20(8):9052-7. doi: 10.1364/OE.20.009052.
Colloidal particle lens array (CPLA) proved to be an efficient near-field focusing device for laser nanoprocessing of materials. Within CPLA, spherical particles do not act as independent microlenses. Due to the coupling of the spherical modes, the field near the clusters of spherical microparticles cannot be calculated by means of the superposition of Mie solutions for individual spheres. In the paper, the electromagnetic field distributions near laser-irradiated clusters of dielectric microspheres with configurations that match the fragments of the close-packed CPLA are studied. It is shown that some practically important mode coupling effects can be understood in terms of an effective immersion medium formed for the spherical particle by its surrounding.
胶体粒子透镜阵列(CPLA)被证明是一种用于材料激光纳米加工的高效近场聚焦装置。在CPLA中,球形粒子并非独立的微透镜。由于球形模式的耦合,球形微粒簇附近的场无法通过单个球体的米氏解叠加来计算。本文研究了与密堆积CPLA片段构型匹配的介电微球激光辐照簇附近的电磁场分布。结果表明,一些实际重要的模式耦合效应可以通过球形粒子周围形成的有效浸没介质来理解。