Advances in Optics and Photonics, volume 8, issue 2, pages 228
Recent progress in semiconductor excitable lasers for photonic spike processing
Publication type: Journal Article
Publication date: 2016-05-20
Journal:
Advances in Optics and Photonics
Q1
Q1
SJR: 8.735
CiteScore: 56.6
Impact factor: 25.2
ISSN: 19438206
Atomic and Molecular Physics, and Optics
Abstract
Recently, there has been tremendous interest in excitable optoelectronic devices and in particular excitable semiconductor lasers that could potentially enable unconventional processing approaches beyond conventional binary-logic-based approaches. In parallel, there has been renewed investigation of non-von Neumann architectures driven in part by incipient limitations in aspects of Moore’s law. These neuromorphic architectures attempt to decentralize processing by interweaving interconnection with computing while simultaneously incorporating time-resolved dynamics, loosely classified as spiking (a.k.a. excitability). The rapid and efficient advances in CMOS-compatible photonic interconnect technologies have led to opportunities in optics and photonics for unconventional circuits and systems. Effort in the budding research field of photonic spike processing aims to synergistically integrate the underlying physics of photonics with bio-inspired processing. Lasers operating in the excitable regime are dynamically analogous with the spiking dynamics observed in neuron biophysics but roughly 8 orders of magnitude faster. The field is reaching a critical juncture at which there is a shift from studying single devices to studying an interconnected network of lasers. In this paper, we review the recent research in the information processing abilities of such lasers, dubbed “photonic neurons,” “laser neurons,” or “optical neurons.” An integrated network of such lasers on a chip could potentially grant the capacity for complex, ultrafast categorization and decision making to provide a range of computing and signal processing applications, such as sensing and manipulating the radio frequency spectrum and for hypersonic aircraft control.
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Prucnal P. R. et al. Recent progress in semiconductor excitable lasers for photonic spike processing // Advances in Optics and Photonics. 2016. Vol. 8. No. 2. p. 228.
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Prucnal P. R., Shastri B. J., Ferreira De Lima T., Nahmias M. A. Recent progress in semiconductor excitable lasers for photonic spike processing // Advances in Optics and Photonics. 2016. Vol. 8. No. 2. p. 228.
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TY - JOUR
DO - 10.1364/aop.8.000228
UR - https://doi.org/10.1364/aop.8.000228
TI - Recent progress in semiconductor excitable lasers for photonic spike processing
T2 - Advances in Optics and Photonics
AU - Prucnal, Paul R.
AU - Shastri, Bhavin J
AU - Ferreira De Lima, Thomas
AU - Nahmias, Mitchell A
PY - 2016
DA - 2016/05/20
PB - Optica Publishing Group
SP - 228
IS - 2
VL - 8
SN - 1943-8206
ER -
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@article{2016_Prucnal,
author = {Paul R. Prucnal and Bhavin J Shastri and Thomas Ferreira De Lima and Mitchell A Nahmias},
title = {Recent progress in semiconductor excitable lasers for photonic spike processing},
journal = {Advances in Optics and Photonics},
year = {2016},
volume = {8},
publisher = {Optica Publishing Group},
month = {may},
url = {https://doi.org/10.1364/aop.8.000228},
number = {2},
pages = {228},
doi = {10.1364/aop.8.000228}
}
Cite this
MLA
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Prucnal, Paul R., et al. “Recent progress in semiconductor excitable lasers for photonic spike processing.” Advances in Optics and Photonics, vol. 8, no. 2, May. 2016, p. 228. https://doi.org/10.1364/aop.8.000228.