Frontiers in Memristive Materials for Neuromorphic Processing Applications : Proceedings of a Workshop
Book Details
Format
Paperback / Softback
ISBN-10
030968319X
ISBN-13
9780309683197
Publisher
National Academies Press
Imprint
National Academies Press
Country of Manufacture
GB
Country of Publication
GB
Publication Date
Oct 7th, 2021
Print length
102 Pages
Product Classification:
Technology: general issues Materials science
Ksh 8,100.00
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Current von Neumann style computing is energy inefficient and bandwidth limited as information is physically shuttled via electrons between processor, short term non-volatile memory, and long-term storage. Biologically inspired neuromorphic computing, with its inherent autonomous learning capabilities and much lower power requirements based on analog processing, is seen as an avenue for overcoming these limitations. The development of nanoelectronic "memory resistors", or memristors, is essential to neuromorphic architectures as they allow logic-based elements for information processing to be combined directly with nonvolatile memory for efficient emulation of neurons and synapses found in the brain. Memristors are typically composed of a switchable material with nonlinear hysteretic behavior sandwiched between two conducting encoding elements. The design, dynamic control, scaling and fundamental understanding of these materials is essential for establishing memristive devices. To explore the state-of-the-art in the materials fundamentally underlying memristor technologies: their science, their mechanisms and their functional imperatives to realize neuromorphic computing machines, the National Academies of Sciences, Engineering, and Medicine's Board on Physics and Astronomy convened a workshop on February 28, 2020. This publication summarizes the presentation and discussion of the workshop. Table of ContentsFront Matter1 Introduction2 Workshop Plenaries3 Panel DiscussionAppendixesAppendix A: Statement of TaskAppendix B: Workshop AgendaAppendix C: Registered Workshop ParticipantsAppendix D: Speaker and Planning Committee Biographical InformationAppendix E: Acronyms
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