Unidirectional propagation control of helical edge states in topological spin photonic crystals

被引:1
|
作者
Sui Wen-Jie [1 ,2 ]
Zhang Yu [1 ,2 ]
Zhang Zi-Rui [1 ,2 ]
Wang Xiao-Long [1 ,2 ]
Zhang Hong-Fang [1 ,2 ]
Shi Qiang [1 ,2 ]
Yang Bing [1 ,2 ]
机构
[1] Liaocheng Univ, Sch Phys Sci & Informat Engn, Liaocheng 252000, Shandong, Peoples R China
[2] Shandong Prov Key Lab Opt Commun Sci & Technol, Liaocheng 252000, Shandong, Peoples R China
关键词
topological; spin; photonic crystal; edge state; BANDS;
D O I
10.7498/aps.71.20220353
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
The unidirectional propagation of the pseudospin-locked optical waves can be achieved by using the helical edge states in two-dimensional topological spin photonic crystals. Although there have been lots of researches on topological spin photonic crystal, the unidirectional propagation regulation of helical edge states has been rarely studied up to now. Herein, by tuning the diameter D of the dielectric rod and the distance R between the center of the unit cell and the center of the rod in two-dimensional topological spin photonic crystal with C-6v symmetry, the effects of geometric parameters on the bandgap structure, topological properties and unidirectional propagation of helical edge states in topological spin photonics crystals are studied in detail. The results show that the parameter R has significant effects on the bandgap structure and topological properties of topological spin photonic crystal, and the diameter D of rod only affects the bandgap positions. The structures of helical edge states and their unidirectional propagations are closely related to the topological properties of the bandgaps and the frequency structures of photonic crystals on both sides of boundary. Without changing the topological properties of bandgaps, only changing the structures of the photonics crystals on either side of the boundary can also regulate the structures of the helical edge states and their unidirectional propagation. Thus, by adjusting the geometric parameters R and D of the topological spin photonic crystals, the helical edge states and their unidirectional propagations can be controlled. This study provides useful references for the selection and application of helical edge states in topological spin photonic crytals.
引用
收藏
页数:13
相关论文
共 35 条
  • [11] Regularly multiple double Dirac cones in photonic bands and topological transitions of all-dielectric photonic crystals
    Jin, Meng-Cheng
    Gao, Yong-Feng
    Ma, Quan-Long
    Zhang, Wei
    Song, He
    Sun, Jia-Ping
    [J]. PHYSICAL REVIEW MATERIALS, 2021, 5 (02)
  • [12] Joannopoulos JD, 2008, PHOTONIC CRYSTALS: MOLDING THE FLOW OF LIGHT, 2ND EDITION, P1
  • [13] Fragile topology based helical edge states in two-dimensional moon-shaped photonic crystals
    Li, Zhongfu
    Chan, Hsun-Chi
    Xiang, Yuanjiang
    [J]. PHYSICAL REVIEW B, 2020, 102 (24)
  • [14] Liu H, 2021, CHIN OPT, V14, P20
  • [15] Lu L, 2014, NAT PHOTONICS, V8, P821, DOI [10.1038/NPHOTON.2014.248, 10.1038/nphoton.2014.248]
  • [16] Lv X Y, 2019, ACTA PHYS SIN, V68
  • [17] Observation of photonic anomalous Floquet topological insulators
    Maczewsky, Lukas J.
    Zeuner, Julia M.
    Nolte, Stefan
    Szameit, Alexander
    [J]. NATURE COMMUNICATIONS, 2017, 8
  • [18] Experimental observation of anomalous topological edge modes in a slowly driven photonic lattice
    Mukherjee, Sebabrata
    Spracklen, Alexander
    Valiente, Manuel
    Andersson, Erika
    Ohberg, Patrik
    Goldman, Nathan
    Thomson, Robert R.
    [J]. NATURE COMMUNICATIONS, 2017, 8
  • [19] Topological photonics
    Ozawa, Tomoki
    Price, Hannah M.
    Amo, Alberto
    Goldman, Nathan
    Hafezi, Mohammad
    Lu, Ling
    Rechtsman, Mikael C.
    Schuster, David
    Simon, Jonathan
    Zilberberg, Oded
    Carusotto, Iacopo
    [J]. REVIEWS OF MODERN PHYSICS, 2019, 91 (01)
  • [20] Experimental Realization of Self-Guiding Unidirectional Electromagnetic Edge States
    Poo, Yin
    Wu, Rui-xin
    Lin, Zhifang
    Yang, Yan
    Chan, C. T.
    [J]. PHYSICAL REVIEW LETTERS, 2011, 106 (09)