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1.
Based on the full-vector finite element method with anisotropic perfectly matched layers, modal birefringence and confinement loss for the fundamental mode in rectangular-lattice photonic crystal fibers with different sizes of elliptical air holes in the cladding and the core are investigated numerically. The results show that the modal birefringence in this proposed photonic crystal fibers can be up to 5.64 × 10?2 at the wavelength of 1.55 μm. Moreover, when the birefringence is higher than 4 × 10?2, the confinement loss of x-polarized mode can be kept less than 0.005 dB/km at 1.55 μm. It means that the tradeoff between the high birefringence and the low confinement loss is overcome.  相似文献   

2.
A novel polarization splitter based on photonic crystal fibers(PCFs) with three cores of high birefringence is proposed.The 45o linearly polarized light is launched into a core.After a coupling length(about 1500 μm),the xand y-polarized light beams are separated into different cores.When the light is launched into another core,the xand y-polarized light from different cores can be obtained and the degree of separation can be also adjusted.The polarization splitter is highly flexible and adjustable.The lengt...  相似文献   

3.
高非线性高双折射光子晶体光纤特性的理论研究   总被引:3,自引:0,他引:3  
基于全矢量有限元法,设计了一种新型零色散波长为1550 nm的高非线性双折射光子晶体光纤(PCF),并分析了PCF的有效折射率、有效模面积、双折射、非线性系数以及色散特性。数值结果表明,当光纤包层孔间距Λ为1.6 μm,大空气孔直径d1为1.4 μm,小空气孔直径d2为0.74 μm和0.76 μm时,光纤的零色散波长都在1550 nm处,该PCF的双折射为4.049×10-3,非线性系数可达28.4 km-1·W-1。这种高非线性高双折射PCF,在1550 nm通信波段具有非常广泛的应用前景。  相似文献   

4.
《Optical Fiber Technology》2014,20(4):320-324
In this paper, a new photonic crystal fiber (PCF) with two zero dispersion wavelengths (ZDWs) based on the tellurite ellipse core is designed. The air holes in the cladding region have a V-shape distribution, which can increase the birefringence. By adjusting the size of tellurite ellipse core, different birefringence and nonlinearity coefficient can be obtained, and the dispersion can also be tailored. When the long axis of the tellurite ellipse core is 0.5 μm and the short axis is 0.25 μm, the birefringence of 7.66 × 10−2 and nonlinearity of 3400 W−1 km−1 around 1550 nm are obtained. This PCF structure provides a way to get the high birefringence and nonlinearity at the same time, which can find extensive applications in the optical communication and sensor system.  相似文献   

5.
A highly birefringent index-guiding photonic crystal fiber (PCF) with flattened dispersion and low confinement loss is proposed by introducing two small air holes with the same diameter in the core area. The fundamental mode field, birefringence, confinement loss, effective mode area and dispersion characteristic of the fibers are studied by the full-vector finite element method (FEM). Simulation results show that a high birefringence with the order of 10 -3 and a low confinement loss of 0.001 dB/km are obtained at 1550 nm. Furthermore, flattened chromatic dispersion from 1450 nm to 1590 nm is obtained.  相似文献   

6.
高双折射双芯光子晶体光纤特性   总被引:5,自引:1,他引:5  
李丹  刘敏  简多  廖洲一  何丁丁 《中国激光》2012,39(4):405005-116
提出一种新型的高双折射双芯光子晶体光纤(PCF)模型,通过将最内层8个空气孔替换为4个椭圆空气孔来增大光纤的结构不对称性;通过改变两纤芯间的空气孔大小、椭圆空气孔的椭圆度以及孔间距来分析光子晶体光纤的双折射度、耦合长度以及色散特性。结果表明,双芯光子晶体光纤的模式双折射度达到10-2量级,耦合长度达0.1367 mm,在1.0~1.6 μm波长范围内具有超平坦色散特性。  相似文献   

7.
《Optical Fiber Technology》2013,19(5):461-467
In this paper, we propose and demonstrate a highly birefringent photonic crystal fiber based on a modified octagonal structure for broadband dispersion compensation covering the S, C, and L-communication bands i.e. wavelength ranging from 1460 to 1625 nm. It is shown theoretically that it is possible to obtain negative dispersion coefficient of about −400 to −725 ps/(nm km) over S and L-bands and a relative dispersion slope (RDS) close to that of single mode fiber (SMF) of about 0.0036 nm−1. According to simulation, birefringence of the order 1.81 × 10−2 is obtained at 1.55 μm wavelength. Moreover, effective area, residual dispersion, effective dispersion, confinement loss, and nonlinear coefficient of the proposed modified octagonal photonic crystal fiber (M-OPCF) are also reported and discussed.  相似文献   

8.
Behavior of GeO 2 core doped, matched cladding singlemode fiber structures fitted for 1.3 μm and for 1.55 μmare studied at high temperature in hydrogen atmosphere. Loss increase prediction for submarine cables after 25 years at 3° C is less than 10 ?4 dB/km at operating wavelengths.  相似文献   

9.
提出了一种新型的混合双包层结构的光子晶体光纤。利用多极法对光纤基模的模场分布、双折射、限制损耗及色散特性等进行了数值模拟,通过调节包层空气孔的孔径大小可以有效地控制光纤的双折射和限制损耗特性。结果发现:新设计的光纤具有高双折射低限制损耗特性,光纤结构参数为=1.0 m,d1=d2=d3=0.8 m时,该光纤在C波段(1.53~1.565 m)及L波段(1.57~1.62 m)呈现负色散及负色散斜率。在波长为1.55 m处,双折射高达10-2,限制损耗小于10-5 dB/m。  相似文献   

10.
A fully polarimetric optical time-domain reflectometer   总被引:4,自引:0,他引:4  
We report the implementation of the first fully polarization sensitive optical time domain reflectometer (POTDR). This nondestructive measurement technique, requiring access to one fiber end only, enables the determination of both the linear and twist induced circular birefringence distribution along the fiber. This information, combined with a knowledge of the mode coupling length, enables the evaluation of the polarization mode dispersion (PMD) properties of fibers and optical cables exhibiting both types of birefringence, as well as identifying fiber sections with and without twist. The POTDR, which has a spatial resolution of 0.3 m, could also be used for monitoring the birefringence properties of fibers at the manufacturing stage, leading to optimization of fabrication techniques to minimize PMD  相似文献   

11.
Highperformancepolarization maintainingfibers (PMFs)havepotentialforanumberofapplicationssuchashighbitratecommunicationsystem,PMfibre loopsforgyroscopesandsoon.Theindex guidingPCFs arecharacterizedbyaseriesofholesrunningthroughou thelengthofthefiberarrangedinamicroscalestructurearoundahighindexcore.Thisoffersanewpossibilityto createhighbirefringenceintheindex guidingPCFs,be causethestack and drawprocessallowstheformationoftherequiredsymmetricorasymmetricmicrostructure andtheindexcontrasto…  相似文献   

12.
Distributed stress sensor with a white-light scanning interferometer is used to detect stress distribution by analyzing polarization mode coupling caused by forces exerted on PMFs (polarization maintaining fibers). In measurement of polarization coupling, the birefringence in sensing fiber is usually considered to be wavelength independent. Sensitivity and spatial resolution of the distributed stress sensor are constant for a given optical source spectrum. In practical measurement, however, the birefringence in PMFs is related with optical wavelength. In other words, birefringence dispersion exists in PMFs. Due to birefringence dispersion, the relationship between stress and coupling strength varies with different positions of external forces, and spatial resolution of the distributed stress sensor descends obviously with transmitted distance. In this paper, influences of external-force positions and optical source spectrum on distributed stress sensor are analyzed in consideration of birefringence dispersion and validated with experiments. A method for compensating birefringence dispersion in the sensing system is proposed in the end.  相似文献   

13.
零模间色散双空芯光子晶体光纤   总被引:2,自引:0,他引:2  
马玲芳  刘敏  李丹  钱燕 《中国激光》2012,39(8):805006-140
分析了双空芯光子晶体光纤(HC-PCF)在纤芯填充液态高折射率温敏物质后的传输特性,应用全矢量有限元法(FEM)研究温度均匀变化时光纤耦合特性、模间色散特性的变化规律。结果表明,在特定温度下,耦合特性随传输波长的增大呈现出先减弱、后增强的变化趋势,且光纤的模间色散存在过零点。通过调节温度或占空比,可以在1.31μm和1.55μm两个常用通信波段内实现零模间色散传输,由此能够完全消除模式间相位不匹配导致的脉冲失真,实现能量的完全交换。  相似文献   

14.
分布反馈光纤激光器模式特性分析   总被引:1,自引:1,他引:1  
徐团伟  李芳  刘育梁  刘丽辉 《中国激光》2007,34(10):1358-1362
根据耦合波理论,在分析分布反馈(DFB)光纤激光器纵模特性的基础上,着重阐述其偏振特性。另外给出了偏振态同耦合系数和双偏振态相移量差的关系。理论分析结果表明,当分布反馈光纤激光器输出为0阶模时,输出激光的偏振状态由耦合系数和双偏振态的相移量差共同决定,即在耦合系数一定的情况下,通过增加双偏振态相移量的差,或在双偏振态相移量差一定的情况下,通过减小耦合系数,可以实现单偏振输出。实验中在经载氢处理的掺铒光纤上制作分布反馈光纤激光器,由于耦合系数较大和双折射效应过小,输出为双偏振态。  相似文献   

15.
《Optical Fiber Technology》2014,20(4):409-413
We report fabrication of a highly nonlinear hybrid microstructured optical fiber composed of chalcogenide glass core and tellurite glass cladding. The flattened chromatic dispersion can be achieved in such an optical fiber with near zero dispersion wavelength at telecommunication wavelengths λ = 1.35–1.7 μm, which cannot be achieved in chalcogenide glass optical fibers due to their high refractive index, i.e. n > 2.1. We demonstrate a hybrid 4-air hole chalcogenide–tellurite optical fiber (Δn = 0.25) with flattened chromatic dispersion around λ = 1.55 μm. In optimized 12-air hole optical fiber composed of the same glasses, the chromatic dispersion values were achieved between −20 and 32 ps/nm/km in a broad wavelength range of 1.5–3.8 μm providing the fiber with extremely high nonlinear coefficient 86,000 km−1W−1. Hybrid chalcogenide/tellurite fibers pumped with the near infrared lasers give good promise for broadband optical amplification, wavelength conversion, and supercontinuum generation in the near- to mid-infrared region.  相似文献   

16.
马勇  邹辉  韦玮 《光电子快报》2016,12(4):257-260
A novel polarization splitter based on octagonal dual-core photonic crystal fiber(O-D-PCF) is proposed. The impacts of several fiber parameters on the coupling characteristics of the polarization splitter are investigated by full-vectorial finite element method(FV-FEM) in detail. Through optimizing the fiber configuration, a 4.267-mm-long polarization splitter with a bandwidth of 37 nm is achieved, and its extinction ratio(ER) is as high as 81.2 d B at the wavelength of 1.55 μm. Compared with the hexagonal dual-core photonic crystal fiber(H-D-PCF) based polarization splitter, both ER and bandwidth of the O-D-PCF based one are effectively improved.  相似文献   

17.
This paper gives a design method for the single-polarization optical fiber which satisfies simultaneously the wide single-polarization bandwidth, the large modal birefringence, and the zero total dispersion at the wavelength of 1.55 μm. As a type of single-polarization fiber, the optical fiber with two hollow circular pits across the core-clad interface is proposed and designed. The normalized power (=Δ the power in the core/the total power) in the core is also evaluated for the designed fibers. It was found from the numerical analysis that when the zero total dispersion is satisfied at the wavelength of 1.55 μm, the maximum modal birefringence of 1.133×10-3 and the maximum single-polarization bandwidth of 100.6 nm are attained for the relative index difference of 1.6%. Then the normalized power in the core is 0.859  相似文献   

18.
设计了一种新型结构的光子晶体光纤,建立了对应的数学模型并采用全矢量有限元法对该结构的模场强度、有效折射率、双折射、色散特性和限制损耗进行了分析。研究表明,该光纤在1 550nm处可以获得高达7.66×10-3的双折射和低至12ps/(nm·km)的色散值,同时在800~1 600nm波长范围内,始终保持1.498×10-6 dB/m以下的极低限制损耗,可用于制造极低色散值的保偏光纤。  相似文献   

19.
《Optical Fiber Technology》2013,19(5):363-368
In this paper, two novel structures of photonic crystal fibers (PCFs) containing elliptical rings of circular air holes are presented. The circular air holes in both structures are arranged in seven elliptical rings, but the number of holes in each ring is different for these structures. Moreover, air hole diameter and hole-to-hole pitch are altered along the distance from the center of the fiber’s cross section. Properties, such as birefringence and confinement loss, of these structures with different numbers of air hole rings are numerically analyzed by using the multipole method. Numerical results show that a high birefringence of 1.626 × 10−3 can be reached at the wavelength of 1.55 μm, and a low confinement loss on the order of 10−8 dB/m can be achieved at the same wavelength. Furthermore, it is also found that elliptic ratio obviously affects birefringence and confinement loss, but the number of air hole rings has little impact on birefringence.  相似文献   

20.
This paper presents an optimum design for highly birefringent hybrid photonic crystal fiber (HyPCF) based on a modified structure for broadband compensation covering the S, C, and L-communication bands i.e. wavelength ranging from 1460 to 1625 nm. The finite element method (FEM) with perfectly matched layer (PML) circular boundary is used to investigate the guiding property. It is demonstrated that it is possible to obtain broadband large negative dispersion, and dispersion coefficient varies from −388.72 to −723.1 ps nm−1 km−1 over S, C and L-bands with relative dispersion slope (RDS) matched to that of single mode fiber (SMF) of about 0.0036 nm−1 at 1550 nm. According to simulation, a five-ring dispersion compensating hybrid cladding photonic crystal fiber (DC-HyPCF) is designed that simultaneously offers birefringence of order 3.79 × 10−2, nonlinear coefficient of 40.1 W−1 km−1 at 1550 nm wavelength. In addition to this, effective area, residual dispersion, and confinement loss of the proposed DC-HyPCF are also reported and discussed.  相似文献   

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