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May 3, 2026Photonics0 citationsOpen Access

Memristors for the Post-Von Neumann Era: Hardware Paradigms, Neuromorphic Perception, and Computing Systems

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KFKerui FuTQTianling Qin

Key Points

  • This review aims to explore memristors' role in advancing beyond the von Neumann architecture and enhancing computing efficiency. It investigates their unique properties and applications in neuromorphic systems.
  • Systematic review of recent advancements in memristor technology and applications.
  • Analysis of operating mechanisms, material innovations, and structural advancements.
  • Examination of applications in neuromorphic vision, tactile systems, and adaptive robotics.
  • Memristors enable energy-efficient in-memory computing and synaptic plasticity emulation.
  • Optoelectronic memristors represent a shift towards integrated sensing and processing capabilities for high-speed applications.
  • Successful implementation of memristor-based systems in real-time perceptual tasks and edge intelligence applications.

Abstract

Memristors, as transformative electronic devices designed to transcend the von Neumann architecture, enable the physical unification of information storage and computation, thereby offering a foundational hardware pathway toward energy-efficient, brain-inspired computing. Their intrinsic analog resistive switching, non-volatility, and history-dependent learning capabilities allow them to natively implement in-memory computing and emulate synaptic plasticity, addressing the critical bottlenecks of energy and speed in conventional systems. Notably, the evolution from electrically controlled memristors to optoelectronic memristors marks a paradigm shift from pure computing to integrated sensing-processing, opening new dimensions for high-speed, parallel, and adaptive signal processing. In recent years, significant progress has been made in the development of memristor-based neuromorphic vision and tactile systems, on-chip signal processors, and dynamic trajectory trackers, demonstrating their potential in edge intelligence, adaptive robotics, and real-time perceptual tasks. This review systematically summarizes the latest advances in memristor technology, providing a comprehensive analysis of their operating mechanisms, material and structural innovations, and cutting-edge applications in neuromorphic perception and computing. Furthermore, it discusses the key challenges and future directions for the development and integration of memristor-based systems in the post-von Neumann era.

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Cite This Study

Fu et al. (2026) studied this question.

synapsesocial.com/papers/69f6e6478071d4f1bdfc6e93https://doi.org/10.3390/photonics13050431
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