Fermi surface anisotropy in plasmonic metals increases the potential for efficient hot carrier extraction
Author:
Funder
Rensselaer Polytechnic Institute
Publisher
American Physical Society (APS)
Subject
Physics and Astronomy (miscellaneous),General Materials Science
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevMaterials.6.125201/fulltext
Reference46 articles.
1. Plasmonic-metal nanostructures for efficient conversion of solar to chemical energy
2. Hot electrons go through the barrier
3. Plasmonic Energy Collection through Hot Carrier Extraction
4. The case for plasmon-derived hot carrier devices
5. Plasmon-induced hot carrier science and technology
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