Chinese Optics Letters, 2017, 15 (3): 030604, Published Online: Jul. 25, 2018   

Influence of the nonlinear propagation effect on the optical signal-to-noise ratio of 400G optical fiber communication systems Download: 764次

Author Affiliations
State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instrument, Tsinghua University, Beijing 100084, China
Copy Citation Text

Huaqiang Qin, Xiaosheng Xiao. Influence of the nonlinear propagation effect on the optical signal-to-noise ratio of 400G optical fiber communication systems[J]. Chinese Optics Letters, 2017, 15(3): 030604.

References

[1] IdlerW.BuchaliF.SchuhK., in Optical Fiber Communication Conference (2016), Tu3A.7.

[2] TrowbridgeS. J., in Optical Fiber Communications Conference and Exhibition (OFC) (2015), p. 1.

[3] CameraM.OlssonB.-E.BrunoG., in 36th European Conference and Exhibition on Optical Communication (2010).

[4] GuiC.WangJ., Photon. Res.4, 168 (2016).

[5] HeZ.LiuW.ShenB.ChenX.GaoX.ShiS.ZhangQ.ShangD.JiY.LiuY., Chin. Opt. Lett.14, 040602 (2016).CJOEE31671-7694

[6] ChengL.XiL.ZhaoD.TangX.ZhangW.ZhangX., Chin. Opt. Lett.13, 100604 (2015).CJOEE31671-7694

[7] DongP.LeeJ.ChenY.-K.BuhlL. L.ChandrasekharS.SinskyJ. H.KimK., J. Lightwave Technol.34, 79 (2016).JLTEDG0733-8724

[8] YounceR.LarikovaJ.WangY., in Asia Communications and Photonics Conference (2012), AS3A.4.

[9] WangK.LuY.LiuL., in Optical Fiber Communication Conference (2015), W3E.2.

[10] ZhangJ.YuJ.ZhuB.LiF.ChienH.-C.JiaZ.CaiY.LiX.XiaoX.FangY., Opt. Express23, 16540 (2015).OPEXFF1094-4087

[11] ZhouY. R.SmithK.WeirP.ChenJ.PanW.ZhouN.XiaoZ., in Optical Fiber Communication Conference (2016), W3B.3.

[12] JiaZ.ChienH.-C.ZhangJ.CaiY.YuJ., in IEEE Photonics Conference (IPC) (2015), p. 413.

[13] ZhouX.NelsonL.IssacR.MagillP.ZhuB.PeckhamD., in Optical Fiber Communication Conference (2012), OM2A.2.

[14] JiaZ., in Optical Fiber Communication Conference (2016), Tu3A.4.

[15] KeJ. H.GaoY.CartledgeJ. C., Opt. Express22, 71 (2014).OPEXFF1094-4087

[16] LiF.YuJ.CaoZ.ChenM.ZhangJ.LiX., Opt. Express24, 2648 (2016).OPEXFF1094-4087

[17] GnauckA. H.WinzerP. J.ChandrasekharS.LiuX.ZhuB.PeckhamD. W., in National Fiber Optic Engineers Conference (2010), PDPB8.

[18] ZhouX.NelsonL. E.MagillP.IsaacR.ZhuB.PeckhamD. W.BorelP. I.CarlsonK., J. Lightwave Technol.30, 553 (2012).JLTEDG0733-8724

[19] HuangY.-K.ZhangS.IpE.WangT.AonoY.TajimaT., in 19th Optoelectronics and Communications Conference (OECC) and the 39th Australian Conference on Optical Fibre Technology (ACOFT) (2014), p. 368.

[20] HuangM.-F.ZhangS.MinoK.AonoY., in Optical Fiber Communication Conference (2014), Th4F.3.

[21] YounceR.LarikovaJ.WangY., J. Opt. Commun. Networking5, A267 (2013).

[22] XiaT. J.WellbrockG. A.HuangM.-F.ZhangS.HuangY.-K.ChangD.-I.BurtsevS.PelouchW.ZakE.SzetoW., in Optical Fiber Communication Conference (2014), Tu2B.1.

[23] HuangY.-K.QianD.YamanF.WangT.MateoE.InoueT.InadaY.ToyotaY.OgataT.SatoM., in National Fiber Optic Engineers Conference (2013), NW4E.1.

[24] GariepyD.HeG.BretonY., “Method and System for Determining in-Band Optical Noise,” US Patent 8787753 (2014).

[25] SchmogrowR.NebendahlB.WinterM.JostenA.HillerkussD.KoenigS.MeyerJ.DreschmannM.HuebnerM.KoosC., IEEE Photon. Technol. Lett.24, 61 (2012).IPTLEL1041-1135

[26] CarenaA.CurriV.BoscoG.PoggioliniP.ForghieriF., J. Lightwave Technol.30, 1524 (2012).JLTEDG0733-8724

Huaqiang Qin, Xiaosheng Xiao. Influence of the nonlinear propagation effect on the optical signal-to-noise ratio of 400G optical fiber communication systems[J]. Chinese Optics Letters, 2017, 15(3): 030604.

本文已被 1 篇论文引用
被引统计数据来源于中国光学期刊网
引用该论文: TXT   |   EndNote

相关论文

加载中...

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!