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Interconnect-Free Multibit Arithmetic and Logic Unit in a Single Reconfigurable 3 μm2 Plasmonic Cavity.

Upkar KumarAurélien CucheChristian GirardSviatlana ViarbitskayaFlorian Dell'OvaRaminfar Al RafrafinGérard Colas des FrancsSreenath BolisettyRaffaele MezzengaAlexandre BouhelierErik Dujardin
Published in: ACS nano (2021)
Processing information with conventional integrated circuits remains beset by the interconnect bottleneck: circuits made of smaller active devices need longer and narrower interconnects, which have become the prime source of power dissipation and clock rate saturation. Optical interchip communication provides a fast and energy-saving option that still misses a generic on-chip optical information processing by interconnect-free and reconfigurable Boolean arithmetic logic units (ALU). Considering metal plasmons as a platform with dual optical and electronic compatibilities, we forge interconnect-free, ultracompact plasmonic Boolean logic gates and reconfigure them, at will, into computing ALU without any redesign nor cascaded circuitry. We tailor the plasmon mode landscape of a single 2.6 μm2 planar gold cavity and demonstrate the operation and facile reconfiguration of all 2-input logic gates. The potential for higher complexity of the same logic unit is shown by a multi-input excitation and a phase control to realize an arithmetic 2-bit adder.
Keyphrases
  • high resolution
  • energy transfer
  • high speed
  • high throughput
  • single molecule
  • single cell
  • mass spectrometry
  • label free
  • metal organic framework