In-phase/quadrature modulation using directly reflectivity-modulated laser

被引:1
|
作者
Dong, Po [1 ,3 ]
Melikyan, Argishti [1 ]
Kim, Kwangwoong [1 ]
Kaneda, Noriaki [2 ]
Stern, Brian [1 ]
Baeyens, Yves [2 ]
机构
[1] Nokia Bell Labs, 791 Holmdel Rd, Holmdel, NJ 07733 USA
[2] Nokia Bell Labs, 600 Mt Ave, Murray Hill, NJ 07974 USA
[3] II VI Inc, 1389 Moffett Pk Dr, Sunnyvale, CA 94089 USA
来源
OPTICA | 2020年 / 7卷 / 08期
关键词
Reflection;
D O I
10.1364/OPTICA.389478
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
In the last decade, coherent optical transmission technology has dominated the provision of high-capacity communica-tions in metro and long-haul networks and is expected to expand to short-reach networks such as data center and passive optical networks. Capacities of more than 1.5 Tb/s have been demonstrated for a single wavelength. In-phase/quadrature (IQ) modulation allows information to be encoded in both the phase and amplitude of light (or in-phase and quadrature components) and is typically achieved by nested multiple Mach-Zehnder modulators (MZMs). MZMs have advantages including low chirp, broadband operation, and easy to achieve high-order quadrature amplitude modulation (QAM), but they are typically large and have high RF power consumption and excess losses. A small IQ transmitter with low RF power consumption is therefore in demand for low-cost and highly integrated coherent modules. In this paper, we exper-imentally demonstrate a directly reflectivity-modulated laser that can potentially achieve this goal. We demonstrate the device on a hybrid silicon/III-V platform, where silicon photonics offers compact components for filters, modulators, and reflectors, and the III-V material provides gain. In principle, the device could inherit the benefits of conventional directly modulated lasers while overcoming their speed limits. We demonstrate 32/50 Gbaud quadrature phase-shifted keying with low bit error ratios and experimentally prove the feasibility of 30 Gbaud 16-QAM. (C) 2020 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
引用
收藏
页码:929 / 933
页数:5
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