Optically-injection locked tunable multimode VCSEL for WDM passive optical networks

C. Chang-Hasnain
{"title":"Optically-injection locked tunable multimode VCSEL for WDM passive optical networks","authors":"C. Chang-Hasnain","doi":"10.1109/INOW.2008.4634467","DOIUrl":null,"url":null,"abstract":"We review the progress of optical injection locking (OIL) of multimode (MM) VCSELs and discuss the potential of using tunable OIL-MM-VCSELs as low-cost high-performance transmitters for wavelength division multiplexed passive optical networks. The wavelength division multiplexed passive optical network (WDM-PON) is actively being developed to deliver bandwidth intensive applications to end users in a cost-effective and future-proof manner [1]. To meet the demands of low-cost wavelength-specific upstream transmitters, we have recently proposed a novel scheme that utilizes optical injection-locked (OIL) 1.55 mum vertical-cavity surface-emitting lasers (VCSELs) as directly modulated upstream transmitters, whereby the injection locking light is furnished by modulated downstream signals [2]. In that configuration, the distributed feeback (DFB) lasers that carry downstream signals from the central office (CO) also serve a second function as master lasers to injection-lock upstream slave VCSELs in the optical network units (ONUs) onto the WDM grid. Our scheme thereby removes the need for external injection locking optical sources, external modulators, and potentially wavelength stabilization circuitry. We showed that the OIL-VCSEL responds mainly to the carrier wavelength. Hence, it does not \"see\" to the modulated downstream signal. Hence, downstream signal does not adversely affect the upstream data flow yet can provide wavelength locking to the standard WDM grid. The VCSELs used in [2] and all of our past experiments [3], however, are single mode VCSELs. While very effective for OIL experiments, single mode VCSELs are intrinsically more expensive. Multimode (MM) VCSELs are attractive low-cost transmitters for high-speed short-reach fiber-optic networks [4,5]. The multimode nature introduces mode competition noise and modal dispersion, preventing these devices from very high speed modulation speed or long transmission distance. Recently, greatly enhanced bandwidth and transmission distance were reported using optical injection locking (OIL) as a technique to improve the direct-modulation response of MM VCSEL [6]. We showed that 54 GHz resonance frequency and 38 GHz 3-dB bandwidth can be obtained with a MM-VCSEL with a free-running 3dB-bandwidth of 3 GHz. These improvements are made possible by leveraging the unique properties of MM-VCSEL, having spatially and spectrally well-separated modes which facilitate efficient injection to preferentially enhance the fundamental transverse mode. We believe this result will be very important for low-cost upgrades of existing embedded local area networks (LANs) and indeed for WDM-PON. The final piece of puzzle to make OIL-MM-VCSEL for WDM-PON is wavelength tunability. As the injected power will be low, coming from CO through 10-25 km of standard fiber, the locking wavelength range is small. A tunable VCSEL will provide the flexibility to enable better locking. Furthermore, a tunable VCSEL can be a universal transmitter for the ONUs despite each ONU could be designated with a different wavelength. Finally, a tunable VCSEL will enable a wider temperature range for high speed operation, enabling not only colorless but coolerless WDM-PON. In this talk, I will review our recent work on tunable VCSEL using a high contrast grating with a very large fabrication tolerance.","PeriodicalId":112256,"journal":{"name":"2008 International Nano-Optoelectronics Workshop","volume":"2675 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2008-09-26","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"4","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"2008 International Nano-Optoelectronics Workshop","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/INOW.2008.4634467","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 4

Abstract

We review the progress of optical injection locking (OIL) of multimode (MM) VCSELs and discuss the potential of using tunable OIL-MM-VCSELs as low-cost high-performance transmitters for wavelength division multiplexed passive optical networks. The wavelength division multiplexed passive optical network (WDM-PON) is actively being developed to deliver bandwidth intensive applications to end users in a cost-effective and future-proof manner [1]. To meet the demands of low-cost wavelength-specific upstream transmitters, we have recently proposed a novel scheme that utilizes optical injection-locked (OIL) 1.55 mum vertical-cavity surface-emitting lasers (VCSELs) as directly modulated upstream transmitters, whereby the injection locking light is furnished by modulated downstream signals [2]. In that configuration, the distributed feeback (DFB) lasers that carry downstream signals from the central office (CO) also serve a second function as master lasers to injection-lock upstream slave VCSELs in the optical network units (ONUs) onto the WDM grid. Our scheme thereby removes the need for external injection locking optical sources, external modulators, and potentially wavelength stabilization circuitry. We showed that the OIL-VCSEL responds mainly to the carrier wavelength. Hence, it does not "see" to the modulated downstream signal. Hence, downstream signal does not adversely affect the upstream data flow yet can provide wavelength locking to the standard WDM grid. The VCSELs used in [2] and all of our past experiments [3], however, are single mode VCSELs. While very effective for OIL experiments, single mode VCSELs are intrinsically more expensive. Multimode (MM) VCSELs are attractive low-cost transmitters for high-speed short-reach fiber-optic networks [4,5]. The multimode nature introduces mode competition noise and modal dispersion, preventing these devices from very high speed modulation speed or long transmission distance. Recently, greatly enhanced bandwidth and transmission distance were reported using optical injection locking (OIL) as a technique to improve the direct-modulation response of MM VCSEL [6]. We showed that 54 GHz resonance frequency and 38 GHz 3-dB bandwidth can be obtained with a MM-VCSEL with a free-running 3dB-bandwidth of 3 GHz. These improvements are made possible by leveraging the unique properties of MM-VCSEL, having spatially and spectrally well-separated modes which facilitate efficient injection to preferentially enhance the fundamental transverse mode. We believe this result will be very important for low-cost upgrades of existing embedded local area networks (LANs) and indeed for WDM-PON. The final piece of puzzle to make OIL-MM-VCSEL for WDM-PON is wavelength tunability. As the injected power will be low, coming from CO through 10-25 km of standard fiber, the locking wavelength range is small. A tunable VCSEL will provide the flexibility to enable better locking. Furthermore, a tunable VCSEL can be a universal transmitter for the ONUs despite each ONU could be designated with a different wavelength. Finally, a tunable VCSEL will enable a wider temperature range for high speed operation, enabling not only colorless but coolerless WDM-PON. In this talk, I will review our recent work on tunable VCSEL using a high contrast grating with a very large fabrication tolerance.
WDM无源光网络的光注入锁定可调多模VCSEL
本文综述了多模(MM) vcsel的光注入锁定(OIL)的研究进展,并讨论了使用可调谐的OIL-MM- vcsel作为波分多路无源光网络的低成本高性能发射机的潜力。波分复用无源光网络(WDM-PON)正在积极开发,以经济高效和面向未来的方式向最终用户提供带宽密集型应用。为了满足低成本波长特定上游发射机的需求,我们最近提出了一种利用光注入锁定(OIL) 1.55 μ m垂直腔面发射激光器(VCSELs)作为直接调制的上游发射机的新方案,其中注入锁定光由调制的下游信号[2]提供。在这种配置中,从中心局(CO)携带下游信号的分布式反馈(DFB)激光器还充当主激光器的第二个功能,将光网络单元(onu)中的上游从VCSELs注入锁定到WDM网格上。因此,我们的方案不需要外部注入锁定光源、外部调制器和潜在的波长稳定电路。结果表明,OIL-VCSEL主要响应载流子波长。因此,它不会“看到”调制的下游信号。因此,下游信号不会对上游数据流产生不利影响,但可以为标准WDM网格提供波长锁定。然而,[2]和我们过去的[3]实验中使用的vcsel都是单模vcsel。虽然单模VCSELs在OIL实验中非常有效,但本质上更昂贵。多模(MM) vcsel是高速短距离光纤网络中具有吸引力的低成本发射器[4,5]。多模特性引入了模态竞争噪声和模态色散,使这些器件无法达到很高的调制速度或较长的传输距离。近年来,利用光注入锁定(OIL)技术提高了MM VCSEL[6]的直接调制响应,极大地提高了带宽和传输距离。结果表明,使用自由运行3db带宽为3ghz的MM-VCSEL可以获得54 GHz的共振频率和38 GHz的3db带宽。这些改进是通过利用MM-VCSEL的独特特性实现的,MM-VCSEL具有空间和光谱分离良好的模式,有利于有效注入,优先增强基横向模式。我们相信这一结果将对现有嵌入式局域网(LANs)和WDM-PON的低成本升级非常重要。为WDM-PON制作OIL-MM-VCSEL的最后一个难题是波长可调性。由于注入功率较低,来自CO通过10- 25km的标准光纤,锁定波长范围较小。可调的VCSEL将提供灵活性,以实现更好的锁定。此外,可调谐VCSEL可以作为ONU的通用发射器,尽管每个ONU可以指定不同的波长。最后,可调VCSEL将为高速运行提供更宽的温度范围,不仅可以实现无色,还可以实现无冷WDM-PON。在这次演讲中,我将回顾我们最近在使用具有非常大制造公差的高对比度光栅的可调谐VCSEL方面的工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
求助全文
约1分钟内获得全文 求助全文
来源期刊
自引率
0.00%
发文量
0
×
引用
GB/T 7714-2015
复制
MLA
复制
APA
复制
导出至
BibTeX EndNote RefMan NoteFirst NoteExpress
×
提示
您的信息不完整,为了账户安全,请先补充。
现在去补充
×
提示
您因"违规操作"
具体请查看互助需知
我知道了
×
提示
确定
请完成安全验证×
copy
已复制链接
快去分享给好友吧!
我知道了
右上角分享
点击右上角分享
0
联系我们:info@booksci.cn Book学术提供免费学术资源搜索服务,方便国内外学者检索中英文文献。致力于提供最便捷和优质的服务体验。 Copyright © 2023 布克学术 All rights reserved.
京ICP备2023020795号-1
ghs 京公网安备 11010802042870号
Book学术文献互助
Book学术文献互助群
群 号:481959085
Book学术官方微信