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NANOARCH 2016 is the leading conference on post-CMOS nanocircuits, nanoarchitectures, emerging nanoscale CMOS, and nanoscale fabrics in general. Both experimental and theoretical works are sought after. 

NANOARCH is the annual cross-disciplinary forum for the discussion of novel post-CMOS nanocomputing directions and emerging nanoscale CMOS. The symposium seeks papers on innovative ideas for solutions to the principal challenge facing integrated electronics in the 21st century - how to design, fabricate, and integrate nanosystems to overcome the fundamental limitations of CMOS.

In particular, such systems could :

  • contain unconventional nanodevices with unique capabilities, including directions beyond simple switches
  • introduce new logic and memory concepts
  • involve novel circuit styles
  • introduce new concepts for computing
  • reconfigure and/or mask faults at much higher rates than in CMOS
  • explore security architectures with nanotechnology
  • involve new paradigms for manufacturing
  • rethink the methodologies and design tools involved

This symposium includes several exciting sessions and opportunities for interaction. In addition to Regular papers presenting original techniques / directions, it invites the community to also submit Nanofabric Progress Updatesgiving a progress update of their nanofabrics directions to date across devices, circuits, architecture and manufacturability aspects - e.g. 2D/3D nanowire, magnonic, memristor, CNT, graphene, FinFETs, and QCA based directions.

In addition, Concept papers are invited from the broader nanotechnology community to highlight promising nanomaterial, nanodevice, nanomanufacturing, and integration ideas with application potential in nanoscale architectures. 

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Example topics (both theoretical and experimental) of interest include (but are not limited to):

  • Novel nanodevices and manufacturing/integration ideas with a focus on nanoarchitectures

  • Nanoelectronic circuits, nanofabrics, computing paradigms and nanoarchitectures

  • 2D/3D/hybrid nanodevice integration and manufacturing, with variability, defect and fault tolerance

  • Nanodevice and nanocircuit models, methodologies and computer aided design tools

  • Fundamental limits of computing at the nanoscale

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重要日期
  • 会议日期

    07月18日

    2016

    07月20日

    2016

  • 07月20日 2016

    注册截止日期

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