Design and Fabrication of Diffractive Optical Elements with MATLAB, Shanti Bhattacharya, Anand Vijayakumar
Автор: Igor Minin; Oleg Minin Название: Diffractive Optics and Nanophotonics ISBN: 3319242512 ISBN-13(EAN): 9783319242514 Издательство: Springer Рейтинг: Цена: 46570.00 T Наличие на складе: Нет в наличии. Описание: In this book the authors present several examples of techniques used to overcome the Abby diffraction limit using flat and 3D diffractive optical elements, photonic crystal lenses, photonic jets, and surface plasmon diffractive optics.
Автор: Yunlong Sheng, Chongxiu Yu, Changhe Zhou Название: Holography, Diffractive Optics, and Applications VII ISBN: 1510604634 ISBN-13(EAN): 9781510604636 Издательство: Mare Nostrum (Eurospan) Рейтинг: Цена: 168170.00 T Наличие на складе: Невозможна поставка. Описание: Proceedings of SPIE offer access to the latest innovations in research and technology and are among the most cited references in patent literature.
Автор: Schuster Название: Diffractive Optics for Thin-Film Silicon Solar Cells ISBN: 3319442775 ISBN-13(EAN): 9783319442778 Издательство: Springer Рейтинг: Цена: 102480.00 T Наличие на складе: Есть у поставщика Поставка под заказ. Описание:
This thesis introduces a figure of merit for light trapping with photonic nanostructures and shows how different light trapping methods compare, irrespective of material, absorber thickness or type of nanostructure. It provides an overview of the essential aspects of light trapping, offering a solid basis for future designs.
Light trapping with photonic nanostructures is a powerful method of increasing the absorption in thin film solar cells. Many light trapping methods have been studied, but to date there has been no comprehensive figure of merit to compare these different methods quantitatively. This comparison allows us to establish important design rules for highly performing structures; one such rule is the structuring of the absorber layer from both sides, for which the authors introduce a novel and simple layer-transfer technique. A closely related issue is the question of plasmonic vs. dielectric nanostructures; the authors present an experimental demonstration, aided by a detailed theoretical assessment, highlighting the importance of considering the multipass nature of light trapping in a thin film, which is an essential effect that has been neglected in previous work and which allows us to quantify the parasitic losses.
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