Effects of hydrostatic pressure on the photonic band structure and quality factor of an L3 cavity in a photonic crystal slab

被引:9
|
作者
Segovia-Chaves, Francis [1 ,2 ]
Vinck-Posada, Herbert [1 ]
机构
[1] Univ Nacl Colombia, Dept Fis, Grp Superconductividad & Nanotecnol, Bogota AA055051, Colombia
[2] Univ Surcolombiana, Programa Fis, Grp Fis Teor, Neiva AA385, Colombia
关键词
Photonic crystal slabs; Photonic band structure; Pressure; Quality factor; TEMPERATURE; REFLECTION; DEPENDENCE; LATTICE; DESIGN; MODES;
D O I
10.1016/j.rinp.2020.102947
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this work, we investigate the effects of hydrostatic pressure on the photonic band structure and quality factor of the fundamental mode in an L3 cavity using the guided-mode expansion method in two-dimensional photonic crystal slabs. The two-dimensional photonic crystal is composed of air holes with circular cross-sections arranged in a hexagonal lattice. Here, the dielectric constant of the slab is a function of hydrostatic pressure and temperature. Upon increasing pressure at a given temperature, the photonic band structure exhibits a shift towards higher frequencies for the TE-like and TM-like modes of the photonic crystal slab. In the L3 cavity, the lateral displacement of the holes must also be considered as the quality factor of the fundamental mode increases with the displacement of the holes. However, there is evidence that the confinement of the L3 cavity decreases when both the hydrostatic pressure and the symmetric lateral shift of the holes increase.
引用
收藏
页数:5
相关论文
共 50 条
  • [1] Effects of hydrostatic pressure on an L1 and L3 cavity of a photonic slab
    Segovia-Chaves, Francis
    Vinck-Posada, Herbert
    [J]. MATERIALS RESEARCH EXPRESS, 2020, 7 (03)
  • [2] Effects of temperature on the fundamental mode in an L3 cavity of a photonic crystal slab
    Segovia-Chaves, Francis
    Vinck-Posada, Herbert
    [J]. OPTIK, 2020, 206
  • [3] Mode structure of the L3 photonic crystal cavity
    Chalcraft, A. R. A.
    Lam, S.
    O'Brien, D.
    Krauss, T. F.
    Sahin, M.
    Szymanski, D.
    Sanvitto, D.
    Oulton, R.
    Skolnick, M. S.
    Fox, A. M.
    Whittaker, D. M.
    Liu, H.-Y.
    Hopkinson, M.
    [J]. APPLIED PHYSICS LETTERS, 2007, 90 (24)
  • [4] Photonic band structure of ZnO photonic crystal slab laser
    Yamilov, A
    Wu, X
    Cao, H
    [J]. JOURNAL OF APPLIED PHYSICS, 2005, 98 (10)
  • [5] Cavity-mode calculation of L3 photonic crystal slab using the effective index perturbation method
    Zhang, Shizhu
    Zhou, Wenfei
    Ye, Xiaoling
    Xu, Bo
    Wang, Zhanguo
    [J]. OPTICAL REVIEW, 2013, 20 (05) : 420 - 425
  • [6] Cavity-mode calculation of L3 photonic crystal slab using the effective index perturbation method
    Shizhu Zhang
    Wenfei Zhou
    Xiaoling Ye
    Bo Xu
    Zhanguo Wang
    [J]. Optical Review, 2013, 20 : 420 - 425
  • [7] Mode structure of coupled L3 photonic crystal cavities
    Chalcraft, A. R. A.
    Lam, S.
    Jones, B. D.
    Szymanski, D.
    Oulton, R.
    Thijssen, A. C. T.
    Skolnick, M. S.
    Whittaker, D. M.
    Krauss, T. F.
    Fox, A. M.
    [J]. OPTICS EXPRESS, 2011, 19 (06): : 5670 - 5675
  • [8] Hydrostatic pressure effects in photonic liquid crystal fibers
    Tefelska, Marzena M.
    Chychlowski, Milosz
    Czapla, Aleksandra
    Dabrowski, Roman
    Ertman, Slawomir
    Nowinowski-Kruszelnicki, Edward
    Wojcik, Jan
    Wolinski, Tomasz R.
    [J]. OPTICAL FIBERS AND THEIR APPLICATIONS 2008, 2008, 7120
  • [9] Photonic crystal L3 cavity laser fabricated using maskless digital photolithography
    Kang, Minsu
    Heesoo, Jin
    Jeon, Heonsu
    [J]. NANOPHOTONICS, 2022, 11 (10) : 2283 - 2291
  • [10] Single and coupled L3 photonic crystal cavities for cavity-QED experiments
    Bonato, Cristian
    Hagemeier, Jenna
    Gerace, Dario
    Thon, Susanna M.
    Kim, Hyochul
    Beirne, Gareth
    Bakker, Morten
    Andreani, Lucio C.
    Petroff, Pierre M.
    van Exter, Martin P.
    Bouwmeester, Dirk
    [J]. PHOTONIC CRYSTAL MATERIALS AND DEVICES X, 2012, 8425