Tunable Hybrid Gap Surface Plasmon Polariton Waveguides with Ultralow Loss Deep-Subwavelength Propagation

被引:0
|
作者
Huong Thanh Nguyen
Son Ngoc Nguyen
Minh-Tuan Trinh
Kazuhiro Hane
Hoang Manh Chu
机构
[1] Hanoi University of Science and Technology,International Training Institute for Materials Science
[2] University of Michigan,Department of Electrical Engineering and Computer Science
[3] Tohoku University,Department of Finemechanics
来源
Plasmonics | 2019年 / 14卷
关键词
Tunable hybrid gap plasmonic waveguide; Nanoelectromechanical tunable hybrid plasmonic waveguide; Ultralow loss deep-subwavelength propagation; Planar fabrication technology; Reliable integration;
D O I
暂无
中图分类号
学科分类号
摘要
Exploring hybrid gap surface plasmon polariton waveguides (HGSPPWs) is an important milestone in developing the next-generation, nanoscale integrated photonic circuit technology. To advance their potential applications, HGSPPWs are required to have tunable capability, highly reliable, simple fabrication process, and feasible integration. In this paper, we propose two tunable HGSPPWs fulfilling the requirements. The proposed HGSPPWs consist of a metallic wedge laterally coupled with a dielectric waveguide. The modal characteristics of HGSPPWs are investigated at the optical telecommunication wavelength, which shows the modal characteristics could be effectively controlled by tuning the key geometry parameters and structure of HGSPPWs. The propagation length could achieve the centimeter scale while maintaining the propagation mode size at the deep-subwavelength scale (~ λ2/105). The studies on fabrication tolerance and waveguide crosstalk show their robust property for practical implementations. The effective tunable mechanism is also proposed and studied, which shows remarkable feasibility to realize multifunctional plasmon-based photonic components. Compared with the conventional HGSPPWs, the proposed HGSPPWs exhibit superior features in ultralow loss deep-subwavelength light guiding, are highly reliable, and are easy to integrate.
引用
收藏
页码:1751 / 1763
页数:12
相关论文
共 50 条
  • [41] Propagation Loss of Long-Range Surface Plasmon Polariton Gold Stripe Waveguides in the Thin-Film Limit
    Slovinsky, Ilya
    Stefansson, Gudmundur K.
    Kossoy, Anna
    Leosson, Kristjan
    PLASMONICS, 2013, 8 (04) : 1613 - 1619
  • [42] Deep-subwavelength light transmission in hybrid nanowire-loaded silicon nano-rib waveguides
    YUSHENG BIAN
    QIANG REN
    LEI KANG
    TAIWEI YUE
    PINGJUAN L.WERNER
    DOUGLAS H.WERNER
    Photonics Research, 2018, 6 (01) : 37 - 45
  • [43] Deep-subwavelength plasmonic-photonic hybrid band gap opening by acoustic Lamb waves
    Hsu, Jin-Chen
    Shih, Jheng-Hong
    Lin, Tzy-Rong
    APPLIED PHYSICS LETTERS, 2017, 111 (02)
  • [44] Simulation of practical nanometric optical circuits based on surface plasmon polariton gap waveguides
    Tanaka, K
    Tanaka, M
    Sugiyama, T
    OPTICS EXPRESS, 2005, 13 (01): : 256 - 266
  • [45] Deep-subwavelength light transmission in hybrid nanowire-loaded silicon nano-rib waveguides
    Bian, Yusheng
    Ren, Qiang
    Kang, Lei
    Yue, Taiwei
    Werner, Pingjuan L.
    Werner, Douglas H.
    PHOTONICS RESEARCH, 2018, 6 (01) : 37 - 45
  • [46] Near-field characterization of guided polariton propagation and cutoff in surface plasmon waveguides
    Zia, Rashid
    Schuller, Jon A.
    Brongersma, Mark L.
    PHYSICAL REVIEW B, 2006, 74 (16):
  • [47] Ultraviolet surface plasmon polariton propagation for ZnO semiconductor-insulator-metal waveguides
    Hu Meng-Zhu
    Zhou Si-Yang
    Han Qin
    Sun Hua
    Zhou Li-Ping
    Zeng Chun-Mei
    Wu Zhao-Feng
    Wu Xue-Mei
    ACTA PHYSICA SINICA, 2014, 63 (02)
  • [48] A low-loss subwavelength plasmonic waveguide for surface plasmon polariton transmission in optical circuits
    Maleki, M. J.
    Soroosh, M.
    OPTICAL AND QUANTUM ELECTRONICS, 2023, 55 (14)
  • [49] Investigation of the loss performance of the spoof surface plasmon polariton waveguides at 1 THz band
    Demircioglu, Mesut
    Unutmaz, Muhammed A.
    Unlu, Mehmet
    TERAHERTZ PHOTONICS II, 2022, 12134
  • [50] Tunable MoS2 modified hybrid surface plasmon waveguides
    He, Xiaoyong
    Liu, Feng
    Lin, Fangting
    Xiao, Guina
    Shi, Wangzhou
    NANOTECHNOLOGY, 2019, 30 (12)