光学学报, 2019, 39 (3): 0306004, 网络出版: 2019-05-10   

基于光纤布拉格光栅拉锥的带宽可调微光纤马赫-曾德尔干涉仪 下载: 1167次

Bandwidth Tunable Microfiber-Assisted Mach-Zehnder Interferometer Based on Tapered-Drawing Fiber Bragg Grating
耿健 1朱晓军 1,2,3,*章国安 1,*徐晨 1,2季彦呈 1金丽 1曹娟 1,2
作者单位
1 南通大学电子信息学院, 江苏 南通 226019
2 南通先进通信技术研究院, 江苏 南通 226000
3 苏州大学江苏省先进光学制造技术重点实验室, 江苏 苏州 215006
引用该论文

耿健, 朱晓军, 章国安, 徐晨, 季彦呈, 金丽, 曹娟. 基于光纤布拉格光栅拉锥的带宽可调微光纤马赫-曾德尔干涉仪[J]. 光学学报, 2019, 39(3): 0306004.

Jian Geng, Xiaojun Zhu, Guoan Zhang, Chen Xu, Yancheng Ji, Li Jin, Juan Cao. Bandwidth Tunable Microfiber-Assisted Mach-Zehnder Interferometer Based on Tapered-Drawing Fiber Bragg Grating[J]. Acta Optica Sinica, 2019, 39(3): 0306004.

参考文献

[1] Jung J, Lee Y W. Continuously wavelength-tunable passband-flattened fiber comb filter based on polarization-diversified loop structure[J]. Scientific Reports, 2017, 7: 8311.

    Jung J, Lee Y W. Continuously wavelength-tunable passband-flattened fiber comb filter based on polarization-diversified loop structure[J]. Scientific Reports, 2017, 7: 8311.

[2] He W, Zhu L Q, Dong M L, et al. Tuneable and stable multi-wavelength thulium-doped ring-cavity fibre laser based on Sagnac loop and Mach-Zehnder filter utilizing thin-core fibre[J]. Laser Physics, 2016, 26(12): 125102.

    He W, Zhu L Q, Dong M L, et al. Tuneable and stable multi-wavelength thulium-doped ring-cavity fibre laser based on Sagnac loop and Mach-Zehnder filter utilizing thin-core fibre[J]. Laser Physics, 2016, 26(12): 125102.

[3] Zhou Y W, Sun G Y, Luo A P. Optically tunable multiwavelength fiber laser based on a Mach-Zehnder comb filter incorporating ytterbium-doped fibers[J]. Laser Physics, 2018, 28(1): 015105.

    Zhou Y W, Sun G Y, Luo A P. Optically tunable multiwavelength fiber laser based on a Mach-Zehnder comb filter incorporating ytterbium-doped fibers[J]. Laser Physics, 2018, 28(1): 015105.

[4] Li Y, Sun Q Z, Xu Z L, et al. A single longitudinal mode fiber ring laser based on cascaded microfiber knots filter[J]. IEEE Photonics Technology Letters, 2016, 28(20): 2172-2175.

    Li Y, Sun Q Z, Xu Z L, et al. A single longitudinal mode fiber ring laser based on cascaded microfiber knots filter[J]. IEEE Photonics Technology Letters, 2016, 28(20): 2172-2175.

[5] Yu H H, Wang Y, Ma J, et al. Fabry-Perot interferometric high-temperature sensing up to 1200 ℃ based on a silica glass photonic crystal fiber[J]. Sensors, 2018, 18(1): 273.

    Yu H H, Wang Y, Ma J, et al. Fabry-Perot interferometric high-temperature sensing up to 1200 ℃ based on a silica glass photonic crystal fiber[J]. Sensors, 2018, 18(1): 273.

[6] Huang B, Shu X W, Du Y Q. Intensity modulated torsion sensor based on optical fiber reflective Lyot filter[J]. Optics Express, 2017, 25(5): 5081-5090.

    Huang B, Shu X W, Du Y Q. Intensity modulated torsion sensor based on optical fiber reflective Lyot filter[J]. Optics Express, 2017, 25(5): 5081-5090.

[7] Jung J, Lee Y W. Continuously tunable polarization-independent zeroth-order fiber comb filter based on polarization-diversity loop structure[J]. Applied Physics B, 2017, 123(4): 106.

    Jung J, Lee Y W. Continuously tunable polarization-independent zeroth-order fiber comb filter based on polarization-diversity loop structure[J]. Applied Physics B, 2017, 123(4): 106.

[8] 鲁彦, 鲁怀伟, 蒲会兰, 等. 基于光纤谐振腔的新型马赫-曾德尔干涉仪型波长交错滤波器[J]. 光学学报, 2017, 37(11): 1106003.

    鲁彦, 鲁怀伟, 蒲会兰, 等. 基于光纤谐振腔的新型马赫-曾德尔干涉仪型波长交错滤波器[J]. 光学学报, 2017, 37(11): 1106003.

    Lu Y, Lu H W, Pu H L, et al. Novel Mach-Zehnder interferometric interleaver based on fiber ring resonators[J]. Acta Optica Sinica, 2017, 37(11): 1106003.

    Lu Y, Lu H W, Pu H L, et al. Novel Mach-Zehnder interferometric interleaver based on fiber ring resonators[J]. Acta Optica Sinica, 2017, 37(11): 1106003.

[9] Yin B, Wang M G, Wu S H, et al. Fiber ring laser based on MMF-PMFBG-MMF filter for three parameters sensing[J]. Optics Express, 2017, 25(25): 30946-30955.

    Yin B, Wang M G, Wu S H, et al. Fiber ring laser based on MMF-PMFBG-MMF filter for three parameters sensing[J]. Optics Express, 2017, 25(25): 30946-30955.

[10] 鲁怀伟, 邬开俊, 魏赟, 等. 基于对称结构的光纤谐振环辅助马赫-曾德尔干涉仪型梳状滤波器的研究[J]. 光学学报, 2012, 32(11): 1106005.

    鲁怀伟, 邬开俊, 魏赟, 等. 基于对称结构的光纤谐振环辅助马赫-曾德尔干涉仪型梳状滤波器的研究[J]. 光学学报, 2012, 32(11): 1106005.

    Lu H W, Wu K J, Wei Y, et al. Study of a novel symmetrical interleaver based on ring resonator assisted mach-zehnder interferometer[J]. Acta Optica Sinica, 2012, 32(11): 1106005.

    Lu H W, Wu K J, Wei Y, et al. Study of a novel symmetrical interleaver based on ring resonator assisted mach-zehnder interferometer[J]. Acta Optica Sinica, 2012, 32(11): 1106005.

[11] 王智, 张丽梅, 王晶, 等. 光子晶体光纤中级联长周期光栅双谐振波长干涉的研究[J]. 光学学报, 2009, 29(10): 2909-2913.

    王智, 张丽梅, 王晶, 等. 光子晶体光纤中级联长周期光栅双谐振波长干涉的研究[J]. 光学学报, 2009, 29(10): 2909-2913.

    Wang Z, Zhang L M, Wang J, et al. Dual resonance interference of cascaded LPG inscribed in photonic crystal fiber[J]. Acta Optica Sinica, 2009, 29(10): 2909-2913.

    Wang Z, Zhang L M, Wang J, et al. Dual resonance interference of cascaded LPG inscribed in photonic crystal fiber[J]. Acta Optica Sinica, 2009, 29(10): 2909-2913.

[12] Xu J, Liu H H, Pang F F, et al. Cascaded Mach-Zehnder interferometers in crystallized sapphire-derived fiber for temperature-insensitive filters[J]. Optical Materials Express, 2017, 7(4): 1406-1413.

    Xu J, Liu H H, Pang F F, et al. Cascaded Mach-Zehnder interferometers in crystallized sapphire-derived fiber for temperature-insensitive filters[J]. Optical Materials Express, 2017, 7(4): 1406-1413.

[13] Gai L T, Li J, Zhao Y. Preparation and application of microfiber resonant ring sensors: a review[J]. Optics & Laser Technology, 2017, 89: 126-136.

    Gai L T, Li J, Zhao Y. Preparation and application of microfiber resonant ring sensors: a review[J]. Optics & Laser Technology, 2017, 89: 126-136.

[14] Liao Y P, Wang J, Wang S S, et al. Simultaneous measurement of seawater temperature and salinity based on microfiber MZ interferometer with a knot resonator[J]. Journal of Lightwave Technology, 2016, 34(23): 5378-5384.

    Liao Y P, Wang J, Wang S S, et al. Simultaneous measurement of seawater temperature and salinity based on microfiber MZ interferometer with a knot resonator[J]. Journal of Lightwave Technology, 2016, 34(23): 5378-5384.

[15] Xian P, Feng G Y, Zhou S H. A compact and stable temperature sensor based on a gourd-shaped microfiber[J]. IEEE Photonics Technology Letters, 2016, 28(1): 95-98.

    Xian P, Feng G Y, Zhou S H. A compact and stable temperature sensor based on a gourd-shaped microfiber[J]. IEEE Photonics Technology Letters, 2016, 28(1): 95-98.

[16] Shin J C, Kwak W G, Han Y G. Temperature-insensitive microfiber Mach-Zehnder interferometer for absolute strain measurement[J]. Journal of Lightwave Technology, 2016, 34(19): 4579-4583.

    Shin J C, Kwak W G, Han Y G. Temperature-insensitive microfiber Mach-Zehnder interferometer for absolute strain measurement[J]. Journal of Lightwave Technology, 2016, 34(19): 4579-4583.

[17] Tan Y Z, Sun L P, Jin L, et al. Microfiber Mach-Zehnder interferometer based on long period grating for sensing applications[J]. Optics Express, 2013, 21(1): 154-164.

    Tan Y Z, Sun L P, Jin L, et al. Microfiber Mach-Zehnder interferometer based on long period grating for sensing applications[J]. Optics Express, 2013, 21(1): 154-164.

[18] 陈振宜, 王廷云, 严方, 等. 熔融光纤拉锥动态形状函数的理论与实验研究[J]. 光电子·激光, 2005, 16(11): 1291-1296.

    陈振宜, 王廷云, 严方, 等. 熔融光纤拉锥动态形状函数的理论与实验研究[J]. 光电子·激光, 2005, 16(11): 1291-1296.

    Chen Z Y, Wang T Y, Yan F, et al. Theoretical and experimental investigation of dynamic-shape-curve function for fused tapering optical fiber[J]. Journal of Optoelectronics·Laser, 2005, 16(11): 1291-1296.

    Chen Z Y, Wang T Y, Yan F, et al. Theoretical and experimental investigation of dynamic-shape-curve function for fused tapering optical fiber[J]. Journal of Optoelectronics·Laser, 2005, 16(11): 1291-1296.

[19] Erdogan T, Mizrahi V, Lemaire P J, et al. Decay of ultraviolet-induced fiber Bragg gratings[J]. Journal of Applied Physics, 1994, 76(1): 73-80.

    Erdogan T, Mizrahi V, Lemaire P J, et al. Decay of ultraviolet-induced fiber Bragg gratings[J]. Journal of Applied Physics, 1994, 76(1): 73-80.

[20] Yin B, Li Y, Liu Z B, et al. Investigation on a compact in-line multimode-single-mode-multimode fiber structure[J]. Optics & Laser Technology, 2016, 80: 16-21.

    Yin B, Li Y, Liu Z B, et al. Investigation on a compact in-line multimode-single-mode-multimode fiber structure[J]. Optics & Laser Technology, 2016, 80: 16-21.

[21] Fu J N, Guan C Y, Zhu Z, et al. In-fiber M-Z interferometer based on cascaded long period gratings in embedded-core fiber[J]. IEEE Photonics Technology Letters, 2017, 29(21): 1876-1879.

    Fu J N, Guan C Y, Zhu Z, et al. In-fiber M-Z interferometer based on cascaded long period gratings in embedded-core fiber[J]. IEEE Photonics Technology Letters, 2017, 29(21): 1876-1879.

耿健, 朱晓军, 章国安, 徐晨, 季彦呈, 金丽, 曹娟. 基于光纤布拉格光栅拉锥的带宽可调微光纤马赫-曾德尔干涉仪[J]. 光学学报, 2019, 39(3): 0306004. Jian Geng, Xiaojun Zhu, Guoan Zhang, Chen Xu, Yancheng Ji, Li Jin, Juan Cao. Bandwidth Tunable Microfiber-Assisted Mach-Zehnder Interferometer Based on Tapered-Drawing Fiber Bragg Grating[J]. Acta Optica Sinica, 2019, 39(3): 0306004.

本文已被 8 篇论文引用
被引统计数据来源于中国光学期刊网
引用该论文: TXT   |   EndNote

相关论文

加载中...

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!