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1.
Opt Express ; 24(7): 6996-7005, 2016 Apr 04.
Article in English | MEDLINE | ID: mdl-27136993

ABSTRACT

We study experimentally and theoretically the electromagnetic field in amplitude and phase behind ball-lenses across a wide range of diameters, ranging from a millimeter scale down to a micrometer. Based on the observation, we study the transition between the refraction and diffraction regime. The former regime is dominated by observables for which it is sufficient to use a ray-optical picture for an explanation, e.g., a cusp catastrophe and caustics. A wave-optical picture, i.e. Mie theory, is required to explain the features, e.g., photonic nanojets, in the latter regime. The vanishing of the cusp catastrophe and the emergence of the photonic nanojet is here understood as the refraction limit. Three different criteria are used to identify the limit: focal length, spot size, and amount of cross-polarization generated in the scattering process. We identify at a wavelength of 642 nm and while considering ordinary glass as the ball-lens material, a diameter of approximately 10 µm as the refraction limit. With our study, we shed new light on the means necessary to describe micro-optical system. This is useful when designing optical devices for imaging or illumination.

2.
Opt Express ; 18(13): 14251-61, 2010 Jun 21.
Article in English | MEDLINE | ID: mdl-20588560

ABSTRACT

We present a new approach of beam homogenizing elements based on a statistical array of concave cylindrical microlens arrays. Those elements are used to diffuse light in only one direction and can be employed together with fly's eye condensers to generate a uniform flat top line for high power coherent light sources. Conception, fabrication and characterization for such 1D diffusers are presented in this paper.


Subject(s)
Lasers, Excimer , Lenses , Optics and Photonics/instrumentation , Silicon Dioxide , Computer Simulation , Diffusion , Equipment Design , Microscopy, Electron, Scanning , Models, Theoretical
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