A compact dual-band bandpass filter based on porous silicon dual-microcavity of one-dimensional photonic crystal
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School of Physical Science and Technology, Xinjiang University, Urumqi 830046, China

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This work has been supported by the National Training Program of Innovation and Entrepreneurship for Undergraduate (No.201410755013), and the Foundation of Xinjiang Education (No.XJEDU2013S04).

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    Abstract:

    We propose a compact dual-band bandpass filter (BPF) based on one-dimensional porous silicon (PS) photonic crystal by electrochemical etching. By inserting three periods of high and low reflective index layers in the center of porous silicon microcavity (PSM), two sharp resonant peaks appear in the high reflectivity stop band on both sides of the resonance wavelength. Through simulation and experiment, the physical mechanisms of the two resonance peaks and the resonance wavelength are also studied. It is found that the resonance wavelength can be tuned only by adjusting the effective optical thickness (EOT) of each PS layer, in which different resonance wavelengths have different widths between the two sharp resonance peaks. Besides, the analysis indicates that oxidization makes the blue shift become larger for high wavelength than that for low wavelength. Such a fabricated BPF based on PS dual-microcavity is easy to be fabricated and low cost, which benefits the application of integrated optical devices.

    Reference
    [1] E. Yablonovitch, Journal of the Optical Society of America B 10, 283 (1993).
    [2] ZHANG Pei-pei, YAO Jian-quan, CUI Hai-xia and LU Ying, Optoelectronics Letters 9, 342 (2013).
    [3] Mohammad Kaleem, ZHANG Xin, YANG You-guang, ZHUANG Yuan and HE Jian-jun, Optoelectronics Letters 9, 358 (2013).
    [4] J. Bao, J. Xiao, L. Fan, X. Li, Y. Hai, T. Zhang and C. Yang, Optics Communications 329, 109 (2014).
    [5] T. F. Khalkhali, B. Rezaei, A. SoltaniVala and M. Kalafi, Optics Communications 326, 43 (2014).
    [6] L. Zhang, D. Yang, K. Chen, T. Li and S. Xia, Optics and Laser Technology 50, 195 (2013).
    [7] G. Lin, X. Chen and D. Zhuang, Optik-International Journal for Light and Electron Optics 125, 4322 (2014).
    [8] M. Y. Mahmoud, G. Bassou and F. Metehri, Optik-International Journal for Light and Electron Optics 125, 4718 (2014).
    [9] A. Saliminia, A. Proulx and R. Vallée, Optics Communications 333, 133 (2014).
    [10] Rui Hu, Yuzhang Liang, Siyu Qian and Wei Peng, Optics Communications 336, 110 (2015).
    [11] N. Barkalina, C. Charalambous, C. Jones and K. Coward, Nanomedicine:Nanotechnology, Biology, and Medicine 10, 921 (2014).
    [12] M. Micha? and G. M. Ma?gorzata, Chemical Engineering Journal 288, 596 (2013).
    [13] K. S. Krishna, Y. Li, S. Li and C. S. S. R. Kumar, Advanced Drug Delivery Reviews 65, 1470 (2013).
    [14] H.Y. Zhang, Z. H. Jia, X. Lv, J. Zhou, L. Chen, R. Liu and J. Ma, Biosensors and Bioelectronics 44, 89 (2013).
    [15] A. Trabelsi and A. Zouari, Solar Energy 107, 220 (2014).
    [16] N. H. Maniy, S. R. Patel and Z. V. P. Murthy, Materials Research Bulletin 57, 6 (2014).
    [17] S. Dhanekar and S. Jain, Biosensors and Bioelectronics 41, 54 (2013).
    [18] L. J. Adam, G. S. Adrian, S. Adnan, J. S. Michael and M. M. Gordon, Sensors & Actuators:A. Physical 203, 154 (2013).
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MA Hui, ZHANG Hong-yan. A compact dual-band bandpass filter based on porous silicon dual-microcavity of one-dimensional photonic crystal[J]. Optoelectronics Letters,2015,11(2):95-99

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History
  • Received:January 08,2015
  • Online: November 26,2015
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