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Integrated optical memristors

delete2023-05-29
delete55
PRE
AI
N
Nathan Youngblood
C
Carlos Rı́os
W
Wolfram H. P. Pernice
H
Harish Bhaskaran *
DOI:10.1038/s41566-023-01217-wdelete
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Abstract

Abstract

En 中文
Memristors in electronics have shown the potential for a range of applications, ranging from circuit elements to neuromorphic computing. In recent years, the ability to vary the conductance of a channel in electronics has enabled in-memory computing, thus leading to substantial interest in memristors. Optical analogues will require modulation of the transmission of light in a semicontinuous and nonvolatile manner. With the proliferation of photonic computing, such an optical analogue, which involves modulating the optical response in integrated circuits while maintaining the modulated state afterwards, is being pursued using a range of functional materials. Here we review recent progress in this important and emerging aspect of photonic integrated circuits and provide an overview of the current state of the art. Optical memristors are of particular interest for applications in high-bandwidth neuromorphic computing, machine learning hardware and artificial intelligence, as these optical analogues of memristors allow for technology that combines the ultrafast, high-bandwidth communication of optics with local information processing. Optical analogues of electronic memristors are desirable for applications including photonic artificial intelligence and computing platforms. Here, recent progress on integrated optical memristors is reviewed.
Keywords:
PHASE-CHANGE MATERIALS
PLASMONIC MEMRISTOR
PHOTONIC SWITCH
RING-RESONATORS
WAVE-GUIDE
SILICON
MEMORY

Journal

Nature Photonics cover
Nature Photonics
IF:
32.9
Papers:
4.3K
Citations:
6.1W

Organization

U
University of Pittsburgh
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4.5W
Papers: 3.6W
Citations: 7.1W
University System of Maryland cover
University System of Maryland
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Papers: 5.6W
Citations: 113
P
pennsylvania commonwealth system of higher education (pcshe)
Scholars:
12.9W
Papers: 11.7W
Citations: 177
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