The future of computing beyond Moore's Law

The work

AuthorsJohn Shalf
Editors
Typearticle
Year2020
Citekeyshalf2020future

Where it appeared

Published inPhilosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences
Volume378
Issue2166
Pages20190061

Identifiers

DOI10.1098/rsta.2019.0061

Abstract

Moore's Law is a techno-economic model that has enabled the information technology industry to double the performance and functionality of digital electronics roughly every 2 years within a fixed cost, power and area. Advances in silicon lithography have enabled this exponential miniaturization of electronics, but, as transistors reach atomic scale and fabrication costs continue to rise, the classical technological driver that has underpinned Moore's Law for 50 years is failing and is anticipated to flatten by 2025. This article provides an updated view of what a post-exascale system will look like and the challenges ahead, based on our most recent understanding of technology roadmaps. It also discusses the tapering of historical improvements, and how it affects options available to continue scaling of successors to the first exascale machine. Lastly, this article covers the many different opportunities and strategies available to continue computing performance improvements in the absence of historical technology drivers.

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How it got hereimport via bibtex
Added2026-08-04 00:00 UTC
Approved bya person 2026-08-16 15:35 UTC

Cite it as

@article{shalf2020future,
  title        = {The future of computing beyond Moore's Law},
  author       = {John Shalf},
  year         = {2020},
  journal      = {Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences},
  volume       = {378},
  number       = {2166},
  pages        = {20190061},
  doi          = {10.1098/rsta.2019.0061},
}

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