期刊文献+

Integrated reconfigurable optical add-drop multiplexers based on cascaded microring resonators 被引量:2

Integrated reconfigurable optical add-drop multiplexers based on cascaded microring resonators
原文传递
导出
摘要 We report on an eight-channel reconfigurable optical add-drop multiplexer based on cascaded microring resonators with a high tuning power consumption and a compact footprint. Microheaters are fabricated on top of the microring resonators and can be modulated using the thermo-optic effect to achieve the reconfigurable functionality of the device. We demonstrate the reconfigurable add-drop multiplexing functionality for channel spacings of 1 O0 GHz and 50 GHz, with the centre wavelengths of the channels aligned to International Telecommunication Union grid specifications. The crosstalk for channel spacings of 100 GHz and 50 GHz are less than -22.5 dB and -15.5 dB, respectively. The average tuning efficiency is about 4.5 mW/nm, and the response speed is about 13.0 kHz. We report on an eight-channel reconfigurable optical add-drop multiplexer based on cascaded microring resonators with a high tuning power consumption and a compact footprint. Microheaters are fabricated on top of the microring resonators and can be modulated using the thermo-optic effect to achieve the reconfigurable functionality of the device. We demonstrate the reconfigurable add-drop multiplexing functionality for channel spacings of 1 O0 GHz and 50 GHz, with the centre wavelengths of the channels aligned to International Telecommunication Union grid specifications. The crosstalk for channel spacings of 100 GHz and 50 GHz are less than -22.5 dB and -15.5 dB, respectively. The average tuning efficiency is about 4.5 mW/nm, and the response speed is about 13.0 kHz.
出处 《Journal of Semiconductors》 EI CAS CSCD 2013年第9期86-91,共6页 半导体学报(英文版)
关键词 eight-channel reconfigurable optical add-drop multiplexers microring resonators thermo-optic ef-fect Si photonic wire SILICON-ON-INSULATOR eight-channel reconfigurable optical add-drop multiplexers microring resonators thermo-optic ef-fect Si photonic wire silicon-on-insulator
  • 相关文献

参考文献25

  • 1Allen M, Liou C, Melle S, et al. Digital optical networks usingphotonic integrated circuits (PICs) address the challenges of re-configurable optical networks. IEEE Commun Mag, 2008,46(1):35.
  • 2Zhu H, Mukherjee B. Online connection provisioning in metrooptical WDM networks using reconfigurable OADMs. J Light-wave Technol, 2005, 23(10): 2893.
  • 3Xiao F, Juswardy B, Alameh. Novel broadband reconfigurableoptical add-drop multiplexer employing custom fiber arrays andopto-VLSI processors. Opt Express, 2008, 16(16): 11703.
  • 4Eldada L, Fujita J,Radojevic A, et al. 40-channel ultra-low-power compact PLC-based ROADM subsystem. ProcOFC/NFOEC, 2006.
  • 5Zong L, Huang X, Wang T, et al. A novel tunable De-MUX/MUX solution for WSS-based ROADM and WXC nodes.Proc OFC/NFOEC, 2007.
  • 6Eamshaw M P, Cappuzzo M,Chen E, et al. Planar lightwave cir-cuit based reconfigurable optical add-drop multiplexer architec-taires and reusable subsystem module. IEEE J Sel Top QuantumElectron, 2005, 11(2): 313.
  • 7Ryf R,Su Y, Moller L, et al. Wavelength blocking filter with flex-ible data rates and channel spacing. J Lightwave Technol, 2005,23(1): 54.
  • 8Geng M, Jia L, Zhang L, et al. Four-channel reconfigurable opti-cal add-drop multiplexer based on photonic wire waveguide. OptExpress, 2009, 17(7): 5502.
  • 9Klein E J, Geuzebroek D H, Kelderman H, et al. Reconfigurableoptical add-drop multiplexer using microring resonators. IEEEPhoton Technol Lett, 2005,17(11): 2358.
  • 10Xu Q, Schmidt B, Pradhan S, et al. Micrometre-scale siliconelectro-optic modulator. Nature, 2005, 435: 325.

同被引文献12

  • 1Gruber M, Jahns J, Sinzinger S. Planar - integrated optical vector - matrix multiplier[J]. Appl Opt,2000, (29) :5367 -5373.
  • 2Goodman J W, Diaz A R, Woody L M. Fully parallel, high speed incoherent optical method for performing discrete Fourier transforms [J]. Opt Lett,1978,(1) :1-3.
  • 3Caulfiald H J, Rhodes W T, Foster M J, et al. Optical implementa- tion of systolic array processing [J]. Opt Commun, 1981, (40) : 86 -90.
  • 4Mosea E P, Grifiqn R D, Pursel F P, et al. Aeousto--optiealm- 3851. [J]. Appl Opt, 1989, (18) :3843 -385.
  • 5C, errard A, Burch J M. Introduction to Matrix Methods in Optics [M]. New York: Dover Publication Inc. , 1975.
  • 6Born M,Wolf E.光学原理(第7版)[M].杨葭荪,译.北京:电子工业出版社.2009.
  • 7Goodman J W.傅里叶光学导论(第3版)[M].秦克诚,刘培森,陈家璧.等译.北京:电子工业出版社,2011.
  • 8李梅,金翊,何华灿,滕亮.基于三值逻辑光学处理器实现向量矩阵乘法[J].计算机应用研究,2009,26(8):2839-2841. 被引量:16
  • 9王先超,姚云飞,陈蕴.一种新的光学向量-矩阵乘法[J].计算机工程与应用,2011,47(6):34-37. 被引量:1
  • 10谢静雅,李新碗,陈建平.基于半导体光放大器的光学向量矩阵乘法器的实现方法[J].光电子.激光,2012,23(4):654-658. 被引量:3

引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部