• Chinese Optics Letters
  • Vol. 12, Issue 11, 112401 (2014)
Hongbo Lv, Yumin Liu, Zhongyuan Yu, Chunwei Ye, and Jie Wang
Author Affiliations
  • State Key Laboratory of Information Photonics and Optical Communications, Beijing University of Posts and Telecommunications, Beijing 100876, China
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    DOI: 10.3788/col201412.112401 Cite this Article Set citation alerts
    Hongbo Lv, Yumin Liu, Zhongyuan Yu, Chunwei Ye, Jie Wang. Hybrid plasmonic waveguides for low-threshold nanolaser applications[J]. Chinese Optics Letters, 2014, 12(11): 112401 Copy Citation Text show less
    References

    [1] X. F. Duan, Y. Huang, R. Agarwal, and C. M. Lieber, Nature 421, 241 (2003).

    [2] L. Zhu, IEEE Photon. Technol. Lett. 22, 535 (2010).

    [3] Y. Shen, G. Yu, J. Fu, and L. Zou, Chin. Opt. Lett. 10, 021301 (2012).

    [4] K. Wen, L. Yan, W. Pan, Z. Guo, and Y. Guo, Chin. Opt. Lett. 10, S22301 (2012).

    [5] Y. Wang, Y. Ma, X. Guo, and L. Tong, Opt. Express 20, 19006 (2012).

    [6] E. Ozbay, Science 311, 189 (2006).

    [7] X. Guo, M. Qiu, J. M. Bao, B. J. Wiley, Q. Yang, X. N. Zhang, Y. G. Ma, H. K. Yu, and L. M. Tong, Nano Lett. 9, 4515 (2009).

    [8] R. M. Dickson and L. A. Lyon, J. Phys. Chem. B 104, 6095 (2000).

    [9] S. A. Maier, P. G. Kik, H. A. Atwater, S. Meltzer, E. Harel, B. E. Koel, and A. A. Requicha, Nat. Mater 2, 229 (2003).

    [10] J. Jung, T. Sondergaard, and S. I. Bozhevolnyi, Phys. Rev. B 76, 035434 (2007).

    [11] U. Schroter and A. Dereux, Phys. Rev. B 64, 125420 (2001).

    [12] G. Veronics and S. Fan, J. Lightw. Technol. 25, 2511 (2007).

    [13] M. Hochberg, T. Baehr-Jones, C. Walker, and A. Scherer, Opt. Express 12, 5481 (2004).

    [14] A. M. Lerer, I. V. Donets, G. A. Kalinchenko, and P. V. Makhno, Photon. Res. 2, 31 (2014).

    [15] R. D. Roy, R. Chattopadhyay, and S. K. Bhadra, Photon. Res. 1, 164 (2013).

    [16] C. C. Huang, IEEE J. Sel. Top. Quant. Electron. 18, 1661 (2012).

    [17] Y. Bian, Z. Zheng, X. Zhao, J. Zhu, and T. Zhou, Opt. Express 17, 21320 (2009).

    [18] R. F. Oulton, V. J. Sorger, D. A. Genov, D. F. P. Pile, and X. Zhang, Nat. Photon. 2, 496 (2008).

    [19] W. L. Barnes, A. Dereux, and T. W. Ebbesen, Nature 424, 824 (2003).

    [20] S. A. Maier and H. A. Atwater, J. Appl. Phys. 98, 011101 (2005).

    [21] M. L. Brongersma, Surface Plasmon Nanophotonics (Springer, New York, 2007).

    [22] V. M. Shalaev and S. Kawata, Nanophotonics with Surface -Plasmons (Elsevier, Amsterdam, 2007).

    [23] A. Maslov and C. Z. Ning, Proc. SPIE 6468, 646801 (2007).

    [24] Y. Yin, T. Qiu, J. Li, and P. K. Chu, Nano Energy 1, 25 (2012).

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    [2] Dongdong Liu, Qiubo Fan, Maofei Mei, Jicheng Wang, Yuewu Pan, Daoxiang Teng, Jian Lu. Tunable multiple plasmon-induced transparency with side-coupled rectangle cavities[J]. Chinese Optics Letters, 2016, 14(5): 052302

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    [3] Ge Wang, Jun Zhu, Duqu Wei, Frank Jiang, Yuanmin Huang. Enhanced Air Microcavity of Channel SPP Waveguide HALby Graphene Material. Plasmonics(2018).

    Hongbo Lv, Yumin Liu, Zhongyuan Yu, Chunwei Ye, Jie Wang. Hybrid plasmonic waveguides for low-threshold nanolaser applications[J]. Chinese Optics Letters, 2014, 12(11): 112401
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