椭圆形空气孔光子晶体光纤可以产生较高的双折射,使得不同偏振方向的光有不同的耦合长度.将光纤的双折射现象应用于双芯光纤中,可以实现偏振状态的分离.应用平面波扩展法分析了椭圆形空气孔、矩形晶格结构的双芯光子晶体光纤中结构参量对光束不同偏振方向的耦合长度的影响,设计了一种基于椭圆形空气孔、矩形晶格结构的双芯光子晶体光纤偏振分束器.应用全矢量光束传播法分析了这种光纤偏振分束器的性能.结果表明,在1.55 μm工作波长上,长度为1.055 mm的光纤即能实现偏振状态的隔离,隔离度达到-16.9 dB,隔离度<-16 dB的带宽可达到270 nm.
参考文献
[1] | Russell P St J,Knight J C,Birks T A,et al.Recent progress in photonic crystal fibres[J].OFC 2000,3:98-100. |
[2] | Wang Jingyuan,Jiang Chun,Hu Weisheng,et al.Properties of index-guided PCF with air-core[J].OPtics & Laser Technology,2007,39. |
[3] | Wang Jingyuan,Jiang Chun,Hu Weisheng,et al.Dispersion and polarization properties of elliptical air-holecontaining photonic crystal fibers[J].Optics & Laser Technology,2007,39. |
[4] | Wang Jingyuan,Jiang Chun,Hu Weisheng,et al.Modified design of photonic crystal fibers with flattened dispersion[J].Optics & Laser Technology,2006,38(3):169-172. |
[5] | Wang Jingyuan,Gao Mingyi,Jiaug Chun,et al.Design and parametric amplification analysis of dispersion-flat photonic crystal fibers[J].Chinese Opt.Left.,2005,3(7):380-382. |
[6] | Hansen T P,Broeng J,Libori S E B,et al.Highly birefringent index-guiding photonic crystal fibers[J].IEEE Photon.Techn01.Left.,2001,13:588-590. |
[7] | Wang Jingyuan,Jiang Chun,Hu Weisheng,et al.High birefringence photonic bandgap fiber with elliptical air holes[J].Optics Fiber Technology,2006,12. |
[8] | Wang Liang,Yang Dongxiao.Highly birefringent elliptical-hole rectangular-lattice photonic crystal fibers with modified air holes near the core[J].Optics Express,2007,15(14):8892-8897. |
[9] | Saitoh Kunimasa,Sato Yuichiro,Koshiba Masanori.Coupling characteristics of dual-core photonic crystal fiber couplers[J].Optics Express,2003,11(24):3188-3195. |
[10] | Zhang Lin,Yang Changxi.Polarization splitter based on photonic crystal fibers[J].Optics Express,2003,11(9):1015-1019. |
[11] | Ryszard B,Przemyslaw S,Darinsz P.Double-core photonic crystal fiber with square lattice[C].Proc.SPIE,2004,5450:223-230. |
[12] | Salgueiro JosdR,Kivshar Yuri S.Nonlinear dual-core photinic crystal fiber couplers[J].Opt.Left.,2005,30(14):1858-1860. |
[13] | Ren Guobin,Wang Zhi,Lou Shuqin,et al.Modal interference in dual-core photonic crystal fibers[J].Acta Physica Sinica,2004,53(8):2600-2607. |
[14] | van der Tol J J G M,Pedersen J W,et al.Mode evolution type polarization splitter on InGaAsP/InP[J].IEEE Photon.Techn01.Lett.,1993,5:1412-1414. |
[15] | Van der Tol J J G M,Pedersen J W,Metaal E G.A short polarization splitter without metal overlays on InGaAsP-InP[J].IEEE Photon.Technol.Left.,1997,9:269-211. |
[16] | Hayakawa T,Asakawa S,Kokubun Y.Arrow-B type polarization splitter with asymmetric Y-branch fabricated by a self-alignment process[J].J.Lightwave Technol.,1997,15:1165-1170. |
[17] | Miliou A N,Srivastava R,et al.A 1.3 μm directional coupler polarization splitter by Ion exchange[J1.J.Lightwave Technol.,1993,11:220-225. |
[18] | Saitoh K,Sato Y,Koshiba M.Polarization splitter in three-core photonic crystal fibers[J].Optics Express,2004,12(17):3940-3946. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%