• Acta Photonica Sinica
  • Vol. 43, Issue 4, 423002 (2014)
LI Ran*, WANG Lei, CHEN Xi, CHEN Chang-ming, YI Yun-ji, DUAN Ning, XU Shuai, LIU Nan, SUN Yu, WANG Fei, and ZHANG Da-ming
Author Affiliations
  • [in Chinese]
  • show less
    DOI: 10.3788/gzxb20144304.0423002 Cite this Article
    LI Ran, WANG Lei, CHEN Xi, CHEN Chang-ming, YI Yun-ji, DUAN Ning, XU Shuai, LIU Nan, SUN Yu, WANG Fei, ZHANG Da-ming. Design of an Integrated Device of Delay Line Array and Thermal Optical Switch Based on Polymeric Materials[J]. Acta Photonica Sinica, 2014, 43(4): 423002 Copy Citation Text show less
    References

    [1] HOWLEY B, WANG Xiao-long, CHEN M, et al. Reconfigurable delay time polymer planar lightwave circuit for an X-band phased-array antenna demonstration[J]. Journal of Lightwave Technology, 2007, 25(3): 883-890.

    [2] CHEN Yi-hong, WU K, ZHAO F, et al. Reconfigurable true-time delay for wideband phased-array antennas[C]. SPIE, 2004, 5363: 125-130.

    [3] RIZA N A, ARAIN M A, KHAN S A. Hybrid analog-digital variable fiber-optic delay line[J]. Journal of Lightwave Technology, 2004, 22(2): 619.

    [4] MADAMOPOULOS N, RIZA N A. Demonstration of an all-digital 7-bit 33-channel photonic delay line for phased-array radars[J]. Applied Optics, 2000, 39(23): 4168-4181.

    [5] WAMKY C M, MITAL R, ANDERSON B L. Demonstration of a quartic cell, a free-space true-time-delay device based on the white cell[J]. Journal of Lightwave Technology, 2006, 24(10): 3849-3855.

    [6] HE Zi-shu, JIN Lin, HAN Yun-jie, et al. Development and implementation techniques of optically controlled phased array radar[J]. Dianzi Xuebao (Acta Electronica Sinica), 2005, 33(12): 2191-2195.

    [7] YANG Ying, DONG Yi, LIU Da-wei, et al. A 7-bit photonic true-time-delay system based on an 8times8 MOEMS optical switch[J]. Chinese Optics Letters, 2009, 7(2): 118-120.

    [8] CAPMANY J, NOVAK D. Microwave photonics combines two worlds[J]. Nature Photonics, 2007, 1(6): 319-330.

    [9] LI R L Q, TANG Hua-jun, CAO Guo-hua, et al. Optically heterodyned 25-GHz true-time-delay lines on thick LD-3 polymer-based planar waveguides[J]. Applied Optics, 1997, 36(18): 4269-4272.

    [10] ACKERMAN E, WANUGA S, KASEMSET D, et al. Integrated 6-bit photonic true-time-delay unit for lightweight 3-6 GHz radar beamformer[C]. Microwave Symposium Digest, 1992., IEEE MTT-S International. IEEE, 1992: 681-684.

    [11] WANG Xiao-long, HOWLEY B, CHEN M Y, et al. Phase error corrected 4-bit true time delay module using a cascaded 2× 2 polymer waveguide switch array[J]. Applied Optics, 2007, 46(3): 379-383.

    [12] RIZA N A. Acousto-optically switched optical delay lines[J]. Optics Communications, 1998, 145(1-6): 15-20.

    [13] RIZA N A, SUMRIDDETCHKAJORN S. Fault-tolerant polarization-insensitive photonic delay line architectures using two-dimensional digital micromirrordevices[J]. Optics Communications, 1999, 160(4): 311-320.

    [14] KAMAN V, ZHENG Xue-zhen, HELKEY R J, et al. A 32-element 8-bit photonic true-time-delay system based on a 288 x 288 3-D MEMS optical switch[J]. IEEE Photonics Technology Letters, 2003, 15(6): 849-851.

    [15] TANG Su-ning, LI Bu-lang, JIANG Nian-hua, et al. Ultra-low-loss polymeric waveguide circuits for optical true-time delays in wideband phased-array antennas[J]. Optical Engineering, 2000, 39(3): 643-651.

    [16] MA H, JEN A K Y, DALTON L R. Polymer-based optical waveguides: materials, processing, and devices[J]. Advanced Materials, 2002, 14(19): 1339-1365.

    [17] YENIAY A, GAO Ren-feng. True time delay photonic circuit based on perfluorpolymerwaveguides[J]. IEEE Photonics Technology Letters, 2010, 22(21): 1565-1567.

    [18] LEE H, CHEN Tong, LIi Jiang, et al. Ultra-low-loss optical delay line on a silicon chip[J]. Nature Communications, 2012, 3: 867.

    [19] WANG Tao. Research on optical control and modulation in silicon microring resonator[D]. Shanghai Jiao Tong University, 2013

    [20] WANG W, SUN X, WANG X, et al. Low power consump-tion polymer thermo-optic switch with Mach-Zehnder interferometer[J]. Acta Photonica Sinica, 2010, 39(4): 610-613.

    [21] BURNS W, MILTON A. Mode conversion in planar-dielectric separating waveguides[J]. IEEE Journal of Quantum Electronics, 1975, 11(1): 32-39.

    [22] CHEN Tao, LIANG Zhong-cheng, XU Ning, et al. Novel space optical switch device of optofluidic[J]. Acta Photonica Sinica, 2010, 39(5): 797-801.

    [23] LIU Fu-min, HUANG Tao, LI Rui-long, et al. Effects of external stress applied to PM fiber-pigtail on extinction ratio of a Y-branch multi-functional integrated optical device[J]. Acta Photonica Sinica, 2011, 40(11): 1636-1640.

    [24] CHEN Chang-ming, YI Yun-ji, WANG Fei, et al. Ultra-long compact optical polymeric array waveguide true-time-delay line devices[J]. IEEE Journal of Quantum Electronics, 2010, 46(5): 754-761.

    CLP Journals

    [1] LI Kai-li, AN Jun-ming, ZHANG Jia-shun, WANG Yue, WANG Liang-liang, WU Yuan-da, LI Jian-guang, YIN Xiao-jie, WANG Hong-jie. Optimal Design of High-speed SOH Electro-optic Modulator Based on SOI[J]. Acta Photonica Sinica, 2016, 45(5): 523001

    LI Ran, WANG Lei, CHEN Xi, CHEN Chang-ming, YI Yun-ji, DUAN Ning, XU Shuai, LIU Nan, SUN Yu, WANG Fei, ZHANG Da-ming. Design of an Integrated Device of Delay Line Array and Thermal Optical Switch Based on Polymeric Materials[J]. Acta Photonica Sinica, 2014, 43(4): 423002
    Download Citation