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Plasmonic fractals: ultrabroadband light trapping in thin film solar cells by a Sierpinski nanocarpet
Authors:Hanif Kazerooni  Amin Khavasi
Institution:1. Chemical Engineering Faculty, Amirkabir University of Technology (Tehran Polytechnic), Tehran, Iran
2. Electrical Engineering Department, Sharif University of Technology, P.O. Box: 11155-4363, Tehran, Iran
Abstract:Plasmonic Sierpinski nanocarpet as back structure for a thin film Si solar cell is investigated. We demonstrate that ultra-broadband light trapping can be obtained by placing square metallic nanoridges with Sierpinski pattern on the back contact of the thin film solar cell. The multiple-scale plasmonic fractal structure allows excitation of localized surface plasmons and surface plasmon polaritons in multiple wavelengths leading to obvious absorption enhancements in a wide frequency range. Full wave simulations show that 109 % increase of the short-circuit current density for a 200 nm thick solar cell, is achievable by the proposed fractal back structure. The amount of light absorbed in the active region of this cell is more than that of a flat cell with semiconductor thickness of 1,000 nm.
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