• Photonics Research
  • Vol. 5, Issue 2, 97 (2017)
Chunsheng Li1, Xinyou Qiu1, and Xun Li2、*
Author Affiliations
  • 1Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan 430074, China
  • 2Department of Electrical and Computer Engineering, McMaster University, Hamilton, ON L8S 4K2, Canada
  • show less
    DOI: 10.1364/PRJ.5.000097 Cite this Article Set citation alerts
    Chunsheng Li, Xinyou Qiu, Xun Li. Hybrid optical wavelength demultiplexer and power combiner for TWDM PON[J]. Photonics Research, 2017, 5(2): 97 Copy Citation Text show less
    References

    [1] R. W. Heron, T. Pfeiffer, D. T. van Veen, J. Smith, S. S. Patel. Technology innovations and architecture solutions for the next-generation optical access network. Bell Labs Tech. J., 13, 163-181(2008).

    [2] P. W. Shumate. Fiber-to-the-home: 1977–2007. J. Lightwave Technol., 26, 1093-1103(2008).

    [3] D. Meis. FTTH is on the move. IEEE Global Telecommunications Conference (GLOBECOM)(2006).

    [4] G. Kramer, G. Pesavento. Ethernet passive optical network (EPON): building a next-generation optical access network. IEEE Commun. Mag., 40, 66-73(2002).

    [5] S. Park, C. Lee, K. Jeong, H. Park, J. Ahn, K. Song. Fiber-to-the-home services based on wavelength-division-multiplexing passive optical network. J. Lightwave Technol., 22, 2582-2591(2004).

    [6] A. Banerjee, Y. Park, F. Clarke, H. Song, S. Yang, G. Kramer, K. Kim, B. Mukherjee. Wavelength-division-multiplexed passive optical network (WDM-PON) technologies for broadband access: a review [Invited]. J. Opt. Netw., 4, 737-758(2005).

    [7] A. R. Dhaini, C. M. Assi, A. Shami. Dynamic bandwidth allocation schemes in Hybrid TDM/WDM passive optical networks. IEEE Consumer Communications and Networking Conference, 6, 30-34(2006).

    [8] Y. Inoue, A. Himeno, K. Moriwaki, M. Kawachi. Silica-based arrayed-waveguide grating circuit as optical splitter/router. Electron. Lett., 31, 726-727(1995).

    [9] M. Zirngibl, C. R. Doerr, C. H. Joyner. Demonstration of a splitter/router based on a chirped waveguide grating router. IEEE Photon. Technol. Lett., 10, 87-89(1998).

    [10] Y. P. Li, L. G. Cohen, C. H. Henry, E. J. Laskowski, M. A. Cappuzzo. Demonstration and application of a monolithic two-PONs-in-one device. European Conference on Optical Communication (ECOC), 2, 123-126(1996).

    [11] J. Mu, C. Xu, W. Huang. An optical power combiner/wavelength demultiplexing module for hybrid WDM FTTX. Opt. Express, 17, 4791-4797(2009).

    [12] M. K. Smit, C. Van Dam. PHASAR-based WDM-devices: Principles, design and applications. IEEE J. Sel. Top. Quantum Electron., 2, 236-250(1996).

    [13] W. Bogaerts, S. K. Selvaraja, P. Dumon, J. Brouckaert, K. De Vos, D. Van Thourhout, R. Baets. Silicon-on-insulator spectral filters fabricated with CMOS technology. IEEE J. Sel. Top. Quantum Electron., 16, 33-44(2010).

    [14] D. Dai, S. He. Novel ultrasmall Si-nanowire-based arrayed-waveguide grating interleaver with spirals. Opt. Commun., 281, 3471-3475(2008).

    [15] Y. Sakamaki, T. Saida, M. Tamura, T. Hashimoto, H. Takahashi. Low-loss Y-branch waveguides designed by wavefront matching method and their application to a compact 1 × 32 splitter. Electron. Lett., 43, 217-219(2007).

    [16] M. Bouda, J. Van Uffelen, C. Van Dam, B. H. Verbeek. Compact 1 × 16 power splitter based on symmetrical 1 × 2 MMI splitters. Electron. Lett., 30, 1756-1758(1994).

    [17] C. Li, X. Li, X. Qiu, Y. Xi. A novel planar waveguide super-multiple-channel optical power splitter. J. Lightwave Technol., 33, 5019-5024(2015).

    [18] K. Suzuki, T. Shibata, Y. Inoue, H. Takahashi. Reduction in the diffraction loss of an arrayed-waveguide grating by use of an interference fringe between slab and arrayed waveguides. Opt. Lett., 30, 2400-2402(2005).

    [19] Y. Shi, S. Anand, S. He. A polarization-insensitive 1310/1550-nm demultiplexer based on sandwiched multimode interference waveguides. IEEE Photon. Technol. Lett., 19, 1789-1791(2007).

    [20] W. Huang, C. Xu, S. Chu, S. K. Chaudhuri. The finite-difference vector beam propagation method: analysis and assessment. J. Lightwave Technol., 10, 295-305(1992).

    [21] G. R. Hadley. Multistep method for wide-angle beam propagation. Opt. Lett., 17, 1743-1745(1992).

    CLP Journals

    [1] Minyue Yang, Mingyu Li, Jianjun He. Polarization insensitive arrayed-input spectrometer chip based on silicon-on-insulator echelle grating[J]. Chinese Optics Letters, 2017, 15(8): 081301

    [2] Jing Xu, Yang Qiu, Ning Deng. Optical phase remodulation for Rayleigh noise mitigation in 10  Gb/s/channel WDM passive optical networks[J]. Chinese Optics Letters, 2017, 15(6): 060604

    [3] Qinghua Yu, Dongmei Wu, Fuchun Chen, Shengli Sun. Design of a wide-field target detection and tracking system using the segmented planar imaging detector for electro-optical reconnaissance[J]. Chinese Optics Letters, 2018, 16(7): 071101

    [4] Chaoyi Li, Junming An, Jiashun Zhang, Liangliang Wang, Jianguang Li, Yue Wang, Xiaojie Yin, Hongjie Wang, Yuanda Wu. 4 × 20 GHz silica-based AWG hybrid integrated receiver optical sub-assemblies[J]. Chinese Optics Letters, 2018, 16(6): 060603

    Chunsheng Li, Xinyou Qiu, Xun Li. Hybrid optical wavelength demultiplexer and power combiner for TWDM PON[J]. Photonics Research, 2017, 5(2): 97
    Download Citation