Plasmonics: Merging Photonics and Electronics at Nanoscale Dimensions
Плазмоника: объединение фотоники и электроники в наномасштабе
2006-01-12
SCID: 54.1/vkks6rgn
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Abstract (AI)
Electronic circuits provide us with the ability to control the transport and storage of electrons. However, the performance of electronic circuits is now becoming rather limited when digital information needs to be sent from one point to another. Photonics offers an effective solution to this problem by implementing optical communication systems based on optical fibers and photonic circuits. Unfortunately, the micrometer-scale bulky components of photonics have limited the integration of these components into electronic chips, which are now measured in nanometers. Surface plasmon-based circuits, which merge electronics and photonics at the nanoscale, may offer a solution to this size-compatibility problem. Here we review the current status and future prospects of plasmonics in various applications including plasmonic chips, light generation, and nanolithography.
Key Findings
1
Electronic circuits face increasing performance limitations for transmitting digital information over distances.
2
Photonics enables efficient optical communication but relies on micrometer-scale components that hinder integration with nanometer-scale electronic chips.
3
Plasmonics has potential applications in plasmonic chips, light generation, and nanolithography.
4
Surface-plasmon-based circuits could merge electronics and photonics at nanoscale dimensions, addressing their size-compatibility problem.
5
The paper reviews the current status and future prospects of plasmonics across these application areas.
Research Object
Surface plasmon-based circuits (plasmonic circuits) integrating photonics and electronics at the nanoscale
Research Subject
Their nanoscale integration and prospects for applications in plasmonic chips, light generation, and nanolithography
Publication Details
Publication Date
2006-01-12
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