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Mark L. Brongersma

dblp:190/3319 · DBLP profile ↗
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1ranked-venue papers
1as first author
0since 2021 · last 2016
—ORCID · unresolved

Domains — the database's venue-derived domains; a paper can count in several

Applied, interdisciplinary, general and emerging computing · 1 · 1 first-author

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Computer architecture, parallel and distributed computing, and storage systems
1 paper
Integrated circuit design · 100%

Topics — the 1 heaviest of 1, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Integrated circuit design
optoelectronic devices
0.212016
Plasmonic Photodetectors, Photovoltaics, and Hot-Electron Devices · Proc. IEEE 2016

Methods — techniques the papers use, named apart from their topics

plasmonics · 0.2
YearPublicationVenuePosition
2016 Plasmonic Photodetectors, Photovoltaics, and Hot-Electron Devices
abstract
The ability of plasmonic structures to manipulate light well below the diffraction limit has enabled the miniaturization of a range of chipscale optoelectronic devices. Of the many emerging applications, the development of plasmon-enhanced photodetection schemes has witnessed particularly impressive progress. For such devices, the scaling behavior is very favorable, and some unavoidable, detrimental optical losses in the metals are often compensated by a substantially improved performance in terms of the electrical power consumption, speed of operation, and the possibility to achieve new functionalities with engineered metallic nanostructures. Plasmonics has also received tremendous interest in the photovoltaics field. Whereas application of dissipative metals in solar cells is challenging based on the current emphasis on very high efficiency cells, new opportunities are emerging in solar fuel generation and for the harvesting of hot carriers. Such devices can capitalize on the optical losses in metals or be used to increase the spectral bandwidth of operation.
Mark L. Brongersma
Proc. IEEE1