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Research Interests
Solar cell device physics, especially light-trapping and photocarrier transport effects.
Charge carrier transport and recombination in disordered materials (amorphous, porous, nanocrystalline).
Deposition processes for thin-film semiconductors.
Bonding defects and metastability in amorphous silicon.
Research Spotlight
Image from a recent paper illustrating the modes in k-space that are accessible to a photon within a solar cell. Light-trapping is essentially a random walk around these modes, ultimately leading to escape through the black “hatch” at the top; this is “ergodic” behavior. The plasmonic modes at a metal/semiconductor interface enhance light-trapping in solar cells by increasing the number of modes that are confined within the solar cell.
Research Interests
Papers共 202 篇Author StatisticsCo-AuthorSimilar Experts
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PHYSICS TEACHERno. 1 (2024): 50-52
AMORPHOUS AND POLYCRYSTALLINE THIN-FILM SILICON SCIENCE AND TECHNOLOGY - 2010no. 1 (2021): 59-64
MRS Online Proceedings Libraryno. 1 (2020): 419-424
MRS Online Proceedings Libraryno. 1 (2020): 425-430
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