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Development trends in silicon photonics 被引量:3

Development trends in silicon photonics
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摘要 Silicon photonics has become one of the major technologies in this very information age. It has been intensively pursued by researchers and entrepreneurs all over the world in recent years. Achieving the large scale silicon photonic integration, particularly monolithic integration, is the final goal so that high density data communication will become much cheaper, more reliable, and less energy consuming. Comparing with the developed countries, China may need to invest more to develop top down nanoscale integration capability (more on processing technology) to sustain the development in silicon photonics and to elevate its own industry structure. Silicon photonics has become one of the major technologies in this very information age. It has been intensively pursued by researchers and entrepreneurs all over the world in recent years. Achieving the large scale silicon photonic integration, particularly monolithic integration, is the final goal so that high density data communication will become much cheaper, more reliable, and less energy consuming. Comparing with the developed countries, China may need to invest more to develop top down nanoscale integration capability (more on processing technology) to sustain the development in silicon photonics and to elevate its own industry structure.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2013年第1期72-77,共6页 中国光学快报(英文版)
基金 partially supported by the Major International(Regional)Cooperation and Exchange Program of the National Natural Science Foundation of China(No.61120106012) the National Natural Science Foundation of China(No.61177058) the National High Technology Research and Development Program ofChina(No.2011AA010302)
关键词 Monolithic integrated circuits PHOTONICS Monolithic integrated circuits Photonics
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  • 2周治平,郜定山,汪毅,陈金林,冯俊波.硅基集成光电子器件的新进展[J].激光与光电子学进展,2007,44(2):31-38. 被引量:12
  • 3KACHRIS C, KANONAKIS K, TOMKOS I. Optical interconnection networks in data centers recent trends and future challenges [J]. IEEE Com- munication Magazine, 2013, 51 (9): 39-45.
  • 4YE Mengyuan, YU Yu, CHEN Guanyu, et al. On-chip WDM mode-di- vision multiplexing interconnection with optional demodulation function [J]. OPTICS EXPRESS, 2015, 23(25):32130-32138.
  • 5WANG Kang, GU Huaxi, YANG Yintang, et al. Optical interconnection network for parallel access to multi-rank memory in future computing sys- tems [J]. OPTICS EXPRESS, 2015, 23 (16):20480-20494.
  • 6Alonsol-Ramos C, Ortega-Mo~ux A, Molina-Fema ndez I, et al. Effi- cient :fiber to-chip grating coupler formicrometric SOl rib waveguides [J]. OPTICS EXPRESS, 2010, 18(14): 15189-15200.
  • 7ZAOUI W S, KUNZE A, Vogel W, et al. Bridging the gap between opti- cal fibers and silicon photonic integrated circuits [J]. OPTICS EXPRESS, 2014, 22(2):1277-1286.
  • 8REED G T, MASHANOVICH G, GARDES F Y, et al. Siliconoptical modulators [J]. Nature Photon, 2010(4):518-526.
  • 9LI T, ZHANG J, YI H, et al. Low-voltage, high speed, compact silicon modulator for BPSK modulation [J]. OPTICS EXPRESS, 2013, 21 (20): 23410-23415.
  • 10TU Z, LIU K, YI H, et al. A compactevanescently-coupled germanium PIN waveguide photodetector [C]//Conference on Nanophotonics and Mi- cro/N~mo Optics, Beijing, Nov 5-7, 2012. Bellingham,USA: Proceedings of SPIE, 2012.

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