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Micro-optics for microfluidic analytical applications - Chemical Society Reviews (RSC Publishing)

The intention of this article is to give a concise overview on current applications of micro-optical components in lighting, including general lighting, automotive lighting, projection, and display backlighting. Regarding the light sources, the focus of this paper is on inorganic light-emitting diodes LEDs and the characteristic problems encountered with them. Lasers, laser diodes, and organic light-emitting diodes OLEDs are out of scope of this paper.

Micro-optical components for current applications of inorganic LEDs may be categorized essentially into three classes: First, components for light shaping, i. These large-area elements comprise micro-optical slabs and sheets for guiding, reflection, and refraction of light and are designed without regard to particular details of type, design, arrangement, and layout of the individual light emitters.

References are given to textbooks and review articles to guide the interested reader to further and more detailed studies on the problems discussed here. Keywords: illumination ; LED ; lighting ; light-emitting diode ; micro-optics. Zappe, Adv. Sinzinger, J. Herzig, Ed.

Refractive optics

Quantum Electron. Mellette, G. Schuster and J. Fischer and M. Kaup, Optik Photonik 8, 52—56 Schreiber, S. Kudaev, P. Dannberg and U. Zeitner, Proc. Geyl, J, , doi: Bertele, H.

Sauer and A. Streibl, J. Pan, C. Wang, H. Key features: - offers a state of the art look at fabrication techologies for micro-optics - provides scientific background and modelling of optics at the micro-scale - looks at techniques for measuring micro-optical component properties - includes various concepts and demonstrations for micro-optical systems "About this title" may belong to another edition of this title. Buy New Learn more about this copy.

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  • New Hardcover Quantity Available: 2. Aspert, E. Cuche, A. Marian, F. Bourquin, P. Marquet and Ch. Their shape, surface quality roughness, defects, scratches, etc. The challenges are as follow:. A critical parameter is the lateral resolution, limited by the numerical aperture NA of the microscope objective. Even with a high NA objective, many samples present slopes that are too steep. To reduce the phase jumps, an immersion medium with a calibrated refractive index may be used. Matching the refractive index of the immersion liquid to that of the sample allows the suppression of the interface structure in contact with the liquid, leaving only the second one to provide phase contrast information.

    This technique permits measurements of a single surface in transmission configuration. In addition to the 3D optical topographic measurements, immersion liquids allow sample refractive index determination.

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