光电工程, 2018, 45 (5): 170633, 网络出版: 2018-06-01   

正方形空气孔光子晶体光纤特性分析

Characteristics in square air hole structure photonic crystal fiber
作者单位
上海市现代光学系统重点实验室,上海理工大学光电信息与计算机工程学院,上海 200093
引用该论文

张学典, 袁曼曼, 常敏, 逯兴莲, 陈楠, 聂富坤, 何猛辉, 亓宁宁, 庄松林. 正方形空气孔光子晶体光纤特性分析[J]. 光电工程, 2018, 45(5): 170633.

Zhang Xuedian, Yuan Manman, Chang Min, Lu Xinglian, Chen Nan, Nie Fukun, He Menghui, Qi Ningning, Zhuang Songlin. Characteristics in square air hole structure photonic crystal fiber[J]. Opto-Electronic Engineering, 2018, 45(5): 170633.

参考文献

[1] Saitoh K, Sato Y, Koshiba M. Coupling characteristics of dual- core photonic crystal fiber couplers[J]. Optics Express, 2003, 11(24): 3188–3195.

[2] 隋宁菠, 杭利军, 刘杰, 等. 光纤光栅用柚子型光子晶体光纤的 设计与制备[J]. 光电工程, 2011, 38(12): 110–114.

    Sui N B, Hang L J, Liu J, et al. The design and fabrication of the grapefruit PCF for the fiber gratings[J]. Opto-Electronic Engineering, 2011, 38(12): 110–114.

[3] Ferrando A, Silvestre E, Andrés P, et al. Designing the properties of dispersion-flattened photonic crystal fibers[J]. Optics Express, 2001, 9(13): 687–697.

[4] Yang T Y, Wang E L, Jiang H M, et al. High birefringence photonic crystal fiber with high nonlinearity and low confinement loss[J]. Optics Express, 2015, 23(7): 8329–8337.

[5] Tsuchida Y, Saitoh K, Koshiba M. Design of single-moded holey fibers with large-mode-area and low bending losses: The significance of the ring-core region[J]. Optics Express, 2007, 15(4): 1794–1803.

[6] Birks T A, Knight J C, Russell P S J. Endlessly single-mode photonic crystal fiber[J]. Optics Letters, 1997, 22(13): 961–963.

[7] Kim S E, Kim B H, Lee C G, et al. Elliptical defected core photonic crystal fiber with high birefringence and negative flattened dispersion[J]. Optics Express, 2012, 20(2): 1385–1391.

[8] Steel M J, Osgood Jr R M. Elliptical-hole photonic crystal fibers[ J]. Optics Letters, 2001, 26(4): 229–231.

[9] Ortigosa-Blanch A, Knight J C, Wadsworth W J, et al. Highly birefringent photonic crystal fibers[J]. Optics Letters, 2000, 25(18): 1325–1327.

[10] Limpert J, Schmidt O, Rothhardt J, et al. Extended single-mode photonic crystal fiber lasers[J]. Optics Express, 2006, 14(7): 2715–2720.

[11] Tan X J, Zhu X S. Optical fiber sensor based on Bloch surface wave in photonic crystals[J]. Optics Express, 2016, 24(14): 16016–16026.

[12] 芦鑫, 毕卫红, 麻硕, 等. 保偏光子晶体光纤模间干涉的研究[J]. 光电工程, 2011, 38(9): 60–64.

    Lu X, Bi W H, Ma S, et al. Modular interference of polarization maintaining photonic crystal fiber[J]. Opto-Electronic Engineering, 2011, 38(9): 60–64.

[13] Zhang Y J, Kainerstorfer J, Knight J C, et al. Experimental measurement of supercontinuum coherence in highly nonlinear soft-glass photonic crystal fibers[J]. Optics Express, 2017, 25(16): 18842–18852.

[14] 曹晔, 李荣敏, 童峥嵘. 一种新型高双折射光子晶体光纤特性研 究[J]. 物理学报, 2013, 62(8): 084215.

    Cao Y, Li R M, Tong Z R. Investigation of a new kind of high birefringence photonic crystal fiber[J]. Acta Physica Sinica, 2013, 62(8): 084215.

[15] Ferrando A, Silvestre E, Miret J J, et al. Nearly zero ultraflattened dispersion in photonic crystal fibers[J]. Optics Letters, 2000, 25(11): 790–792.

[16] Steel M J, Osgood Jr R M. Polarization and dispersive properties of elliptical-hole photonic crystal fibers[J]. Journal of Lightwave Technology, 2001, 19(4): 495–503.

[17] 吴宵宵, 范万德, 廖文英, 等. 石墨烯包层结构光子晶体光纤的 高双折射特性[J]. 光子学报, 2016, 45(1): 0106002.

    Wu X X, Fan W D, Liao W Y, et al. High birefringence in graphene structure photonic crystal fiber[J]. Acta Photonica Sinica, 2016, 45(1): 0106002.

[18] Reeves W H, Knight J C, Russell P S J, et al. Demonstration of ultra-flattened dispersion in photonic crystal fibers[J]. Optics Express, 2002, 10(14): 609–613.

[19] Saitoh K, Florous N, Koshiba M. Ultra-flattened chromatic dispersion controllability using a defected-core photonic crystal fiber with low confinement losses[J]. Optics Express, 2005, 13(21): 8365–8371.

[20] Dabas B, Sinha R K. Dispersion characteristic of hexagonal and square lattice chalcogenide As2Se3 glass photonic crystal fiber[J]. Optics Communications, 2010, 283(7): 1331–1337.

[21] 陈瑰, 蒋作文, 彭景刚, 等. 空气包层大模场面积掺镱光子晶体 光纤研究[J]. 物理学报, 2012, 61(14): 144206.

    Chen G, Jiang Z W, Peng J G, et al. Study of air-clad large-mode-area ytterbium doped photonic crystal fiber[J]. Acta Physica Sinica, 2012, 61(14): 144206.

[22] Kumar V V R K, George A K, Knight J C, et al. Tellurite photonic crystal fiber[J]. Optics Express, 2003, 11(20): 2641–2645.

[23] 刘永兴, 张培晴, 许银生, 等. Ge20Sb15Se65 硫系玻璃光子晶体 光纤的中红外色散特性[J]. 光子学报, 2012, 41(5): 516–521.

    Liu Y X, Zhang P Q, Xu Y S, et al. Dispersion properties of Ge20Sb15Se65 chalcogenide glass photonic crystal fiber for mid-ir region[J]. Acta Photonica Sinica, 2012, 41(5): 516–521.

[24] 陈月娥, 侯蓝田. Yb3+掺杂双包层光子晶体光纤制备研究[J]. 光电工程, 2009, 36(2): 62–66.

    Chen Y E, Hou L T. Preparation of Yb3+doped double-clad photonic crystal fiber[J]. Opto-Electronic Engineering, 2009, 36(2): 62–66.

[25] Inci H D, Ozsoy S. Birefringence, dispersion and loss properties for PCFs with rectangular air-holes[J]. Infrared Physics & Technology, 2014, 67: 354–358.

[26] Yajima T, Yamamoto J, Ishii F, et al. Low-loss photonic crystal fiber fabricated by a slurry casting method[J]. Optics Express, 2013, 21(25): 30500–30506.

[27] Yang S G, Zhang Y J, Peng X Z, et al. Theoretical study and experimental fabrication of high negative dispersion photonic crystal fiber with large area mode field[J]. Optics Express, 2006, 14(7): 3015–3023.

[28] Ohkubo T, Tsuchida E, Kenzo D, et al. Insights from ab initio molecular dynamics simulations for a multicomponent oxide glass[J]. Journal of the American Ceramic Society, 2018, 101(3): 1122–1134.

[29] Lines M E. Oxide glasses for fast photonic switching: A comparative study[J]. Journal of Applied Physics, 1991, 69(10): 6876–6884.

[30] Mito T, Fujino S, Takebe H, et al. Refractive index and material dispersions of multi-component oxide glasses[J]. Journal of Non-Crystalline Solids, 1997, 210(2–3): 155–162.

[31] Karasawa N. Dispersion properties of liquid crystal core photonic crystal fibers calculated by a multipole method modified for anisotropic inclusions[J]. Optics Communications, 2015, 338: 123–127.

[32] Coen S, Chau A H L, Leonhardt R, et al. White-light supercontinuum generation with 60-ps pump pulses in a photonic crystal fiber[J]. Optics Letters, 2001, 26(17): 1356–1358.

[33] Shi F F, Wu Y, Li M C, et al. Highly birefringent two-mode photonic crystal fibers with near-zero flattened dispersion[J]. IEEE Photonics Journal, 2011, 3(6): 1181–1188.

张学典, 袁曼曼, 常敏, 逯兴莲, 陈楠, 聂富坤, 何猛辉, 亓宁宁, 庄松林. 正方形空气孔光子晶体光纤特性分析[J]. 光电工程, 2018, 45(5): 170633. Zhang Xuedian, Yuan Manman, Chang Min, Lu Xinglian, Chen Nan, Nie Fukun, He Menghui, Qi Ningning, Zhuang Songlin. Characteristics in square air hole structure photonic crystal fiber[J]. Opto-Electronic Engineering, 2018, 45(5): 170633.

本文已被 3 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!