Si-based photonic crystals and photonic-band-gap waveguides

被引:1
|
作者
Notomi, M [1 ]
Shinya, A [1 ]
Yamada, K [1 ]
Takahashi, J [1 ]
Takahashi, C [1 ]
Yokohama, I [1 ]
机构
[1] NTT Corp, NTT Basic Res Labs, Atsugi, Kanagawa 2430198, Japan
来源
PHOTONIC BANDGAP MATERIALS AND DEVICES | 2002年 / 4655卷
关键词
photonic crystal; photonic band gap; line defect waveguide; SOI; photonic crystal slab. group dispersion;
D O I
10.1117/12.463864
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
We experimentally demonstrate the structural tuning of the waveguiding modes of line defects in photonic crystal slabs. By tuning the defect widths, we realized efficient single-mode waveguides that operate within photonic band gap frequencies in SOI photonic crystal slabs. The observed waveguiding characteristics agree very well with 3D finite-difference time-domain calculations. The propagation loss of the line defect waveguides is experimentally determined to be 6 dB/mm. In addition, we measure group velocity dispersion of line defects by using Fabry-Perot resonance of the sample. Extremely large group dispersion is observed, and the traveling speed of light is reduced down to 1/100 of the light velocity in air.
引用
收藏
页码:92 / 104
页数:13
相关论文
共 50 条
  • [1] Photonic-band-gap waveguides and resonators in SOI photonic crystal slabs
    Notomi, M
    Shinya, A
    Kuramochi, E
    Mitsugi, S
    Ryu, HY
    Kawabata, T
    Tsuchizawa, T
    Watanabe, T
    Shoji, T
    Yamada, K
    IEICE TRANSACTIONS ON ELECTRONICS, 2004, E87C (03): : 398 - 408
  • [2] Si-based photonic crystals and photonic-bandgap waveguides
    Notomi, M
    Shinya, A
    Kuramochi, E
    Yokohama, I
    Takahashi, C
    Yamada, K
    Takahashi, J
    Kawashima, T
    Kawakami, S
    IEICE TRANSACTIONS ON ELECTRONICS, 2002, E85C (04): : 1025 - 1032
  • [3] The effect of temperature and angle of incidence on photonic band gap in a dispersive Si-based one dimensional photonic crystal
    Kumar, Vipin
    Suthar, B.
    Kumar, Arun
    Singh, Kh. S.
    Bhargava, A.
    PHYSICA B-CONDENSED MATTER, 2013, 416 : 106 - 109
  • [4] Light transmission in photonic bandgap waveguides and photonic band crystals
    Baba, T
    ACTIVE AND PASSIVE OPTICAL COMPONENTS FOR WDM COMMUNICATIONS II, 2002, 4870 : 306 - 312
  • [5] Experimental study on photonic band gap extension in heterostructural photonic crystals
    Song, QH
    Liu, LY
    Wang, WC
    Xu, L
    INTERNATIONAL SYMPOSIUM ON PHOTONIC GLASS (ISPG 2002), 2003, 5061 : 234 - 238
  • [6] Photonic band gap engineering in 2D photonic crystals
    Kalra, Yogita
    Sinha, R-K
    PRAMANA-JOURNAL OF PHYSICS, 2006, 67 (06): : 1155 - 1164
  • [7] The size influence of silica microspheres on photonic band gap of photonic crystals
    Ma, Xiying
    Yan, Zhijun
    INTERNATIONAL JOURNAL OF MODERN PHYSICS B, 2007, 21 (16): : 2761 - 2768
  • [8] Photonic band gap engineering in 2D photonic crystals
    Yogita Kalra
    R K Sinha
    Pramana, 2006, 67 : 1155 - 1164
  • [9] Towards Si-based photonic circuits: Integrating photonic crystals in silicon-on-insulator platforms
    Kocher, G.
    Khunsin, W.
    Arpiainen, S.
    Romero-Vivas, J.
    Romanov, S. G.
    Ye, J.
    Lange, B.
    Jonsson, F.
    Zentel, R.
    Ahopelto, J.
    Torres, C. M. Sotomayor
    SOLID-STATE ELECTRONICS, 2007, 51 (02) : 333 - 336
  • [10] Application on the photonic band gap of titanium dioxide photonic crystals
    Li Xiaojing
    Qiao Guanjun
    Chen Jierong
    Xi, Zhou
    PROGRESS IN CHEMISTRY, 2008, 20 (04) : 491 - 498