Toward the Lambertian limit of light trapping in thin nanostructured silicon solar cells.
basic_science · Level V
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- Record sourced from PubMed, PMID 20925323.
- Also identified by DOI 10.1021/nl1029804.
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Abstract
We examine light trapping in thin silicon nanostructures for solar cell applications. Using group theory, we design surface nanostructures with an absorptance exceeding the Lambertian limit over a broad band at normal incidence. Further, we demonstrate that the absorptance of nanorod arrays closely follows the Lambertian limit for isotropic incident radiation. These effects correspond to a reduction in silicon mass by 2 orders of magnitude, pointing to the promising future of thin crystalline silicon solar cells.
Medical subject headings
- Electric Power Supplies
- Models, Chemical
- Nanostructures
- Silicon
- Solar Energy