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High-Performance Silicon Photonics Using Heterogeneous Integration

delete2022-05-01
delete117
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OA
AI
C
Chao Xiang
W
Warren Jin
D
Duanni Huang
M
Minh A. Tran
J
Joel Guo
Y
Yating Wan
W
Weiqiang Xie
G
Géza Kurczveil
A
Andrew Netherton
D
Di Liang
H
Haisheng Rong
J
John E. Bowers *
DOI:10.1109/JSTQE.2021.3126124delete
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Abstract

Abstract

En 中文
The performance of silicon photonic components and integrated circuits has improved dramatically in recent years. As a key enabler, heterogeneous integration not only provides the optical gain which is absent from native Si substrates and enables complete photonic functionalities on chip, but also lays the foundation of versatile integrated photonic device performance engineering. This paper reviews recent progress of high-performance silicon photonics using heterogeneous integration, with emphasis on ultra-low-loss waveguides, single-wavelength lasers, comb lasers, and photonic integrated circuits including optical phased arrays for LiDAR and optical transceivers for datacenter interconnects.
Keywords:
Waveguide lasers
Optical waveguides
Laser modes
Silicon photonics
Optical losses
Lasers
Arrayed waveguide gratings
Silicon photonics
lasers
photonic integration

Journal

I
IEEE Journal of Selected Topics in Quantum Electronics
IF:
5.1
Papers:
5.6K
Citations:
1.2W

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University of California Santa Barbara
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H
hewlett-packard
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834
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University of California System cover
University of California System
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37.5W
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I
Intel Corporation
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Papers: 2.0K
Citations: 6
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