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arxiv: 1805.10152 · v1 · pith:WD3O5WATnew · submitted 2018-05-25 · ⚛️ physics.app-ph · physics.comp-ph· physics.optics

Antireflective nanotextures for monolithic perovskite-silicon tandem solar cells

classification ⚛️ physics.app-ph physics.comp-phphysics.optics
keywords nanotexturescellslimitmethodperovskite-siliconsinusoidalsolartandem
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Recently, we studied the effect of hexagonal sinusoidal textures on the reflective properties of perovskite-silicon tandem solar cells using the finite element method (FEM). We saw that such nanotextures, applied to the perovskite top cell, can strongly increase the current density utilization from 91% for the optimized planar reference to 98% for the best nanotextured device (period 500 nm and peak-to-valley height 500~nm), where 100% refers to the Tiedje-Yablonovitch limit. In this manuscript we elaborate on some numerical details of that work: we validate an assumption based on the Tiedje-Yablonovitch limit, we present a convergence study for simulations with the finite-element method, and we compare different configurations for sinusoidal nanotextures.

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