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Designing Nanotextures Using Perlin Noise, the Scalar Scattering Theory and the Finite Elements Method

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Abstract

Scattering nanotextures increase the photocurrent density in thin-film solar cells. We apply the scalar scattering theory to find optimal scattering morphologies for different configurations and verify the results with finite elements calculations.

© 2014 Optical Society of America

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More Like This
The Scalar Scattering Theory: A Multi-Functional Tool for Optimizing Scattering in Thin-Film Silicon Solar Cells

K. Jäger, R. A. C. M. M. van Swaaij, and M. Zeman
PT3C.7 Optical Nanostructures and Advanced Materials for Photovoltaics (PV) 2012

Light management with sinusoidal nanotextures

Klaus Jäger, Phillip Manley, David Eisenhauer, Philipp Tockhorn, Johannes Sutter, Martin Hammerschmidt, Sven Burger, Steve Albrecht, and Christiane Becker
OT5C.5 Optics for Solar Energy (OSE) 2018

Sinusoidal Nanotextures for Coupling Light into c-Si Thin-Film Solar Cells

Klaus Jäger, Carlo Barth, Martin Hammerschmidt, Sven Herrmann, Sven Burger, Frank Schmidt, and Christiane Becker
PTu4B.3 Optical Nanostructures and Advanced Materials for Photovoltaics (PV) 2015

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