Integrated optofluidic microsystem based on vertical high-order one-dimensional silicon photonic crystals

被引:25
|
作者
Barillaro, G. [1 ]
Merlo, S. [1 ,2 ]
Surdo, S.
Strambini, L. M. [1 ]
Carpignano, F. [2 ]
机构
[1] Univ Pisa, Dipartimento Ingn Informaz, I-56122 Pisa, Italy
[2] Univ Pavia, Dipartimento Elettron, I-27100 Pavia, Italy
关键词
Optofluidics; Microsystem; Photonic crystals; Refractive index; FABRICATION; LAMBDA;
D O I
10.1007/s10404-011-0896-0
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
In this work, fabrication and testing of an optofluidic microsystem exploiting high aspect-ratio, vertical, silicon/air one-dimensional (1D) photonic crystals (PhC) are reported. The microsystem is composed of an electrochemically micromachined silicon substrate integrating a 1D PhC featuring high-order bandgaps in the near-infrared region, bonded to a glass cover provided with inlet/outlet holes for liquid injection/extraction in/out the PhC-itself. Wavelength shifts of the reflectivity spectrum of the photonic crystal, in the range 1.0-1.7 mu m, induced by flow of different liquids through the PhC air gaps are successfully measured using an in-plane all-fibre setup, thanks to the PhC high aspect-ratio value. Experimental results well agree with theoretical predictions and highlight the good linearity and high sensitivity of such an optofluidic microsystem in measuring refractive index changes. The sensitivity value is estimated to be 1,049 nm/RIU around 1.55 mu m, which is among the highest reported in the literature for integrated refractive index sensors, and explained in terms of enhanced interaction between light and liquid within the PhC.
引用
收藏
页码:545 / 552
页数:8
相关论文
共 50 条
  • [41] Silicon-based one-dimensional photonic crystal microcavity
    San, C
    Bo, Q
    Chen, KJ
    Jun, X
    Wei, L
    Huang, XF
    FIFTH INTERNATIONAL CONFERENCE ON THIN FILM PHYSICS AND APPLICATIONS, 2004, 5774 : 470 - 475
  • [42] Optical properties of one-dimensional photonic crystals obtained by micromatchining silicon (a review)
    V. A. Tolmachev
    Optics and Spectroscopy, 2017, 122 : 646 - 660
  • [43] Optical properties of one-dimensional photonic crystals obtained by micromatchining silicon (a review)
    Tolmachev, V. A.
    OPTICS AND SPECTROSCOPY, 2017, 122 (04) : 646 - 660
  • [44] Optical characterization of alcohol-infiltrated one-dimensional silicon photonic crystals
    Barillaro, Giuseppe
    Merlo, Sabina
    Strambini, Lucanos M.
    OPTICS LETTERS, 2009, 34 (12) : 1912 - 1914
  • [45] Anomalous patterned scattering spectra of one-dimensional porous silicon photonic crystals
    de la Mora, M. B.
    del Rio, J. A.
    Nava, R.
    Tagueena-Martinez, J.
    Reyes-Esqueda, J. A.
    Kavokin, A.
    Faubert, J.
    Lugo, J. E.
    OPTICS EXPRESS, 2010, 18 (22): : 22808 - 22816
  • [46] Optical Characterization of High-Order 1-D Silicon Photonic Crystals
    Barillaro, Giuseppe
    Strambini, Lucanos Marsilio
    Annovazzi-Lodi, Valerio
    Merlo, Sabina
    IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS, 2009, 15 (05) : 1359 - 1367
  • [47] Construction, fabrication, and investigation of the reflection spectra of one-dimensional photonic crystals obtained by means of vertical anisotropic etching of silicon
    Tolmachev, VA
    Astrova, EV
    Granitsyna, LS
    Remenyuk, AD
    Vlasova, EN
    Volchek, BZ
    JOURNAL OF OPTICAL TECHNOLOGY, 2003, 70 (02) : 125 - 129
  • [48] Excitonic polaritons in one-dimensional photonic crystals
    Nojima, S
    PHYSICAL REVIEW B, 1998, 57 (04): : R2057 - R2060
  • [49] Demonstration of mid-infrared slow light one-dimensional photonic crystal ring resonator with high-order photonic bandgap
    Sun, Fujun
    Dong, Bowei
    Wei, Jingxuan
    Ma, Yiming
    Tian, Huiping
    Lee, Chengkuo
    OPTICS EXPRESS, 2020, 28 (21): : 30736 - 30747
  • [50] The Quantum Well of One-Dimensional Photonic Crystals
    Liu, Xiao-Jing
    Ma, Ji
    Meng, Xiang-Dong
    Li, Hai-Bo
    Lu, Jing-Bin
    Li, Hong
    Chen, Wan-Jin
    Wu, Xiang-Yao
    Zhang, Si-Qi
    Wu, Yi-Heng
    ADVANCES IN CONDENSED MATTER PHYSICS, 2015, 2015