• Acta Photonica Sinica
  • Vol. 50, Issue 11, 1105001 (2021)
Qifa LIU1,2,*, Lihui ZHU1, Xu XU1, Kerui FENG1, and Xiefeng CHENG2
Author Affiliations
  • 1College of Telecommunication and Information Engineering,Nanjing University of Posts and Telecommunications,Nanjing 210003,China
  • 2National and Local Joint Engineering Laboratory of RF Integration and Micro-Assembly Technology,Nanjing University of Posts and Telecommunications,Nanjing 210003,China
  • show less
    DOI: 10.3788/gzxb20215011.1105001 Cite this Article
    Qifa LIU, Lihui ZHU, Xu XU, Kerui FENG, Xiefeng CHENG. Study on Properties of Fully Etched Bragg Grating Waveguide Filters[J]. Acta Photonica Sinica, 2021, 50(11): 1105001 Copy Citation Text show less
    References

    [1] S E MILLER. Integrated optics: An introduction. Bell System Technical Journal, 48, 2059-2069(1969).

    [2] Y ARAKAWA, T NAKAMURA, Y URINO et al. Silicon photonics for next generation system integration platform. IEEE Communications Magazine, 51, 72-77(2013).

    [3] R SOREF. The past, present, and future of silicon photonics. IEEE Journal of Selected Topics in Quantum Electronics, 12, 1678-1687(2007).

    [4] T E MURPHY, J T HASTINGS, H I SMITH. Fabrication and characterization of narrow-band Bragg-reflection filters in silicon-on-insulator ridge waveguides. Journal of Lightwave Technology, 19, 1938-1942(2001).

    [5] H QIU, G JIANG, T HU et al. FSR-free add-drop filter based on silicon grating-assisted contradirectional couplers. Optics Letters, 38, 1-3(2013).

    [6] O J PAINTER, A HUSAIN, A SCHERER et al. Room temperature photonic crystal defect lasers at near-infrared wavelengths in InGaAsP. Journal of Lightwave Technology, 17, 2082-2088(1999).

    [7] H PARK, S KIM, S KWON et al. Electrically driven single-cell photonic crystal laser. Science, 305, 1444-1447(2004).

    [8] Gang REN, Wanhua ZHENG, Yejin ZHANG et al. Room-temperature photonic crystal laser in H3 cavity on InGaAsP/InP slab. Chinese Physics Letters, 25, 981-984(2008).

    [9] H PARK, B R KOCH, E J NORBERG et al. Heterogeneous integration of silicon photonic devices and integrated circuits(2015).

    [10] C PORZI, G SERAFINO, P VELHA et al. Integrated SOI high-order phase-shifted bragg grating for microwave photonics signal processing. Journal of Lightwave Technology, 35, 4479-4487(2017).

    [11] Weijun JIANG, Lu XU, Yifan LIU et al. Optical filter switchable between bandstop and bandpass responses in SOI wafer. IEEE Photonics Technology Letters, 32, 1(2020).

    [12] Zhichao LUO, Aiping LUO, Wencheng XU. Polarization-controlled tunable all-fiber comb filter based on a modified dual-pass Mach–Zehnder interferometer. IEEE Photonics Technology Letters, 21, 1066-1068(2009).

    [13] Jun CHENG, Nan YAN. Three-step lithography to the fabrication of vertically coupled micro-ring resonators in amorphous silicon-on-insulator. Chinese Optics Letters, 13, 082201(2015).

    [14] D ROSENBLATT, A SHARON, A A FRIESEM. Resonant grating waveguide structures. IEEE Journal of Quantum Electronics, 33, 2038-2059(1997).

    [15] A MELIKYAN, L ALLOATTI, A MUSLIJA et al. High-speed plasmonic phase modulators. Nature Photonics, 8, 229-233(2014).

    [16] Lijun HAO, Yuechun SHI, Rulei XIAO et al. Study on sampled waveguide grating with antisymmetric periodic structure. Optics Express, 23, 15784-15791(2015).

    [17] H OKAYAMA, Y ONAWA, D SHIMURA et al. Si waveguide polarisation rotation chirped Bragg grating. Electronics Letters, 53, 96-98(2016).

    [18] Wenbin FENG, Zhengtian GU. Ultra-broadband optical filter based on chirped long-period fiber grating and PMTP. IEEE Photonics Technology Letters, 30, 1361-1363(2018).

    [19] Rui MIN, C MARQUES, o BANG et al. Moire phase-shifted fiber Bragg gratings in polymer optical fibers. Optical Fiber Technology, 41, 78-81(2018).

    [20] Jian KANG, Zhenzhou CHENG, Wen ZHOU et al. Focusing subwavelength grating coupler for mid-infrared suspended membrane germanium waveguides. Optics Letters, 42, 2094-2097(2017).

    [21] Xia CHEN, Chao LI, K Y CHRISTY et al. Apodized waveguide grating couplers for efficient coupling to optical fibers. IEEE Photonics Technology Letters, 22, 1156-1158(2010).

    [22] R MARCHETTI, C LACAVA, L CARROLL et al. Coupling strategies for silicon photonics integrated chips. Photonics Research, 7, 201-239(2019).

    [23] J R PIERCE. Coupling of modes of propagation. Journal of Applied Physics, 25, 179-183(1954).

    [24] T ERDOGAN. Fiber grating spectra. Journal of Lightwave Technology, 15, 1277-1294(1997).

    [25] A Z MOHAMMED, A K ABASS, S K IBRAHIM. Design and analysis of fiber Bragg grating tunable filter utilizing thermal technique(2018).

    [26] Yao YUAN,, Haifeng LIU, Lifang XUE et al. Design of lithium niobate phase-shifted Bragg grating for electro-optically tunable ultra-narrow bandwidth filtering. Applied Optics, 58, 6770-6774(2019).

    [27] Liang HONG, Ying KANG, Wang DI et al. All-fiber narrow-bandwidth rectangular optical filter with reconfigurable bandwidth and tunable center wavelength. Optics Express, 29, 11739-11749(2021).

    [28] Jihou WANG, Liang CHAO, Shang GUAN et al. Metal-print-defining thermo-optic tunable chirped waveguide Bragg gratings using organic-inorganic hybrid PMMA materials. Optical Materials Express, 8, 1870-1881(2018).

    [29] Po DONG, Wei QIAN, Hong LIANG et al. Thermally tunable silicon racetrack resonators with ultralow tuning power. Optics Express, 18, 20298-20304(2010).

    [30] Ziyang ZHANG, A M NOVO, Dongliang LIU et al. Compact and tunable silicon nitride Bragg grating filters in polymer. Optics Communications, 321, 23-27(2014).

    [31] Liang TIAN, Fei WANG, Yuanda WU et al. Polymer/silica hybrid integration add-drop filter based on grating-assisted contradirectional coupler. Optics Letters, 43, 2348-2351(2018).

    [32] Jihou WANG, Changming CHEN, Chunxue WANG et al. Metal-printing defined thermo-optic tunable sampled apodized waveguide grating wavelength filter based on low loss fluorinated polymer material. Applied Sciences, 10, 167(2020).

    [33] Yuan YAO, Haifeng LIU, Lifang XUE et al. Design of lithium niobate phase-shifted Bragg grating for electro-optically tunable ultra-narrow bandwidth filtering. Applied Optics, 58, 6770-6774(2019).

    [34] Weifeng ZHANG, N EHTESHAMI, Weilin LIU et al. Silicon-based on-chip electrically tunable sidewall Bragg grating Fabry-Perot filter. Optics Letters, 40, 3153-3156(2015).

    [35] Min WANG, Yingxin XU, Zhiwei FANG et al. On-chip electro-optic tuning of a lithium niobate microresonator with integrate in-plane microelectrodes. Optics Express, 25, 124-129(2017).

    Qifa LIU, Lihui ZHU, Xu XU, Kerui FENG, Xiefeng CHENG. Study on Properties of Fully Etched Bragg Grating Waveguide Filters[J]. Acta Photonica Sinica, 2021, 50(11): 1105001
    Download Citation