用于数据通信的硅调制:过去、现在和未来(特邀评论)

Binhao Wang, Qiangsheng Huang, Kaixuan Chen, Jianhao Zhang, G. Kurczveil, D. Liang, S. Palermo, M. Tan, R. Beausoleil, Sailing He
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引用次数: 10

摘要

数据中心成为技术基础设施的重要组成部分。为了满足日益增长的网络设备和用户在IT业务、存储、通信和网络方面的需求,数据通信业务呈指数级增长。高带宽和高能效的光互连对于提高数据中心的整体生产力和效率至关重要。大型数据中心有望解决光互连所占很大一部分的功耗和成本问题。硅光子学是一个很有前途的平台,可以为Datacom提供节省电力和潜在的带宽增加。为了进一步提高调制效率,硅光子学领域发展了几种减小光模体积或增强光物质效应的调制技术。许多其他材料如III-V和LiNbO3被集成在硅光子学上,以最大限度地提高光链路性能。从垂直腔面发射激光(VCSEL)直接调制到硅光子调制器,再到混合硅调制器,综述了数据通信的几种调制技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MODULATION ON SILICON FOR DATACOM: PAST, PRESENT, AND FUTURE (INVITED REVIEW)
Datacenters become an important part of technical infrastructure. The Datacom traffic grows exponentially to satisfy the demands in IT services, storage, communications, and networking to the growing number of networked devices and users. High bandwidth and energy efficient optical interconnects are critical to improve overall productivity and efficiency in data centers. Mega-data centers are expected to address the power consumption and the cost in which optical interconnects contribute quite a large part. Silicon photonics is a promising platform to offer savings in power and potential increase in bandwidth for Datacom. Several modulation techniques are developed in silicon photonics to reduce the optical mode volume or enhance the light matter effect to further improve the modulation efficiency. Many other materials such as III-V and LiNbO3 are integrated on silicon photonics to maximize the optical link performance. This paper reviews several modulation techniques for Datacom, from vertical-cavity surface-emitting laser (VCSEL) direct modulation to silicon photonics modulators then to hybrid silicon modulators.
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