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1.
应用多极法理论和传输矩阵法,对基于包层空气孔为正六边形对称结构的光子晶体光纤的布喇格光栅特性进行了计算和仿真。对比研究了常规单模光纤所成光栅与相同光栅周期的光子晶体光纤布喇格光栅反射谱之间的差异,重点研究了光子晶体光纤的结构参数变化(间隙孔半径、层数)与光子晶体光纤光栅的谐振峰变化规律。当光子晶体光纤的间隙孔半径增大时,光子晶体光纤光栅的谐振波长出现蓝移;当光子晶体光纤的间隙孔径不变、层数增加时,光子晶体光纤光栅的谐振波长出现红移。  相似文献   

2.
提出一种基于空气孔填充的光子晶体光纤与普通单模光纤低损耗耦合方法,并通过光束传播法数值仿真的方式研究了填充物折射率以及填充长度等参数对耦合损耗的影响。结果表明,选择合适的填充参数可以大幅度降低光子晶体光纤与普通单模光纤间的耦合损耗,从而实现光子晶体光纤与普通单模光纤间的低损耗耦合。该方法可适用于多种光子晶体光纤与普通单模光纤之间的低损耗耦合,在光子晶体光纤与普通单模光纤的模场严重失配的情况下,该方法的优势更为明显。  相似文献   

3.
提出一种基于空气孔填充的光子晶体光纤与普通单模光纤低损耗耦合方法,并通过光束传播法数值仿真的方式研究了填充物折射率以及填充长度等参数对耦合损耗的影响。结果表明,选择合适的填充参数可以大幅度降低光子晶体光纤与普通单模光纤间的耦合损耗,从而实现光子晶体光纤与普通单模光纤间的低损耗耦合。该方法可适用于多种光子晶体光纤与普通单模光纤之间的低损耗耦合,在光子晶体光纤与普通单模光纤的模场严重失配的情况下,该方法的优势更为明显。  相似文献   

4.
一种新结构高双折射光子晶体光纤   总被引:1,自引:1,他引:1  
提出了一种新结构的高双折射光子晶体光纤,通过引入掺氟实心圆的方式形成双折射,而不采用大多数高双折射光子晶体光纤中引入不同孔径空气孔或椭圆空气孔的结构。应用全矢量平面波法对其基模场分布、模式截止以及各种结构参量对模式双折射特性的影响进行了详细的分析和讨论。结果表明,该结构光子晶体光纤可以在较宽波长范围内产生10-3量级的模式双折射,且通过调节孔径,可以灵活地将双折射最高点调整到所需的波长上。另外,该结构高双折射光子晶体光纤在拉制工艺、光纤强度以及光纤熔接等方面也具有一定的优势。  相似文献   

5.
齐跃峰  乔汉平  毕卫红  刘燕燕 《物理学报》2011,60(3):34214-034214
研究了基于结构性改变的光子晶体光纤光栅的热激法制备工艺,理论分析了此种工艺的成栅原理,采用热传导理论和有限元法研究了制备过程中光子晶体光纤中的温度场分布,以及包层空气孔结构和激光参数对成栅效果的影响.研究结果表明,利用光子晶体光纤包层空气孔周期性塌缩可以形成光栅;采用两点热激法时,能够实现能量在光纤径向均匀分布,轴向近似于高斯分布;包层气孔结构加速了成栅过程,相同光斑尺寸下,光纤塌缩所需激光功率随气孔层数和气孔半径的增大而减小;最后,对包层空气孔结构为1层到7层的光子晶体光纤热激过程进行仿真,得到了空气填 关键词: 光纤光栅 光子晶体光纤 热激法 有限元法  相似文献   

6.
根据流体力学的相关理论建立了毛细管拉制过程的简化模型.首先通过理论计算,分析了毛细管制作中的各种工艺参量,如控制参量、设备参量、预制棒结构参量等,对最终毛细管结构的影响.在本文讨论的工艺下,毛细管结构的相对缩塌不可避免,而工艺参量的调整仅可以在一定程度上改善结构的变化.最后通过具体的拉制实验与理论计算进行了比较分析,二者取得了很好的一致性,验证了计算模型的可靠性.相关结论可推广到光子晶体光纤的制作中,有很好的工艺参考价值. 关键词: 光子晶体光纤 毛细管 制作理论 工艺参量  相似文献   

7.
光子晶体光纤接续损耗的理论分析   总被引:5,自引:0,他引:5  
基于超格子构造法,采用全矢量模型计算了光子晶体光纤的模场半径,由此出发理论分析了光子晶体光纤与普通单模光纤之间接续损耗分别受横向偏移、轴向倾斜以及模场不匹配的影响,给出了光子晶体光纤在部分常用结构参量区域{Λ,d/Λ}内与SMF-28接续损耗的理论值,讨论了光子晶体光纤各结构参量与接续损耗之间的关系。并简要分析了不同结构光子晶体光纤之间的接续损耗。结果表明,接续损耗对横向偏移和轴向倾斜都非常敏感;孔距是决定接续损耗大小最主要的因素;与普通单模光纤接续,当光子晶体光纤的孔距比该单模光纤纤芯半径大一些时,接续损耗比较小;两种不同结构光子晶体光纤之间的接续损耗大小最主要取决于它们孔距的差异。  相似文献   

8.
刘天沐  江毅  崔洋 《光子学报》2020,49(4):115-122
提出了一种在高温环境下同时测量温度和气压的光子晶体光纤温度压力传感器.在普通单模光纤和光子晶体光纤之间熔接一段空心光纤构成干涉结构.空心光纤段构成非本征法布里-珀罗干涉仪,利用光子晶体光纤的微孔与外界相通,通过气体折射率变化来测量环境中的气压变化;光子晶体光纤段构成本征法布里-珀罗干涉仪,利用热膨胀效应和热光效应来测量环境中的温度.传感器的解调通过自制的白光干涉解调仪实现,实验通过测量腔长得到被测环境的温度和气压.在不同温度和气压环境下,对腔长分别为306μm和1535μm的温度压力光纤传感器进行连续测量.实验结果表明,传感器能够在28~800℃的温度下和0~10 MPa的气压下稳定工作,测量范围内温度灵敏度可达17.4 nm/℃,压力灵敏度随温度增加而降低,在28℃时可达1460.5 nm/MPa.  相似文献   

9.
刘旭安  吴根柱  陈达如  刘军  卢启景 《光子学报》2011,40(11):1728-1732
设计了一种新型高双折射光子晶体光纤,即其包层引入椭圆形空气孔,且以三角晶格方式周期排列,纤芯引入亚波长尺寸(~0.16 μm)的微型双孔结构阵列.采用全矢量有限元法和各向异性完美匹配层边界条件分析了该型光子晶体光纤的双折射特性和色散特性,详细介绍了该光子晶体光纤在不同的椭圆率、椭圆归一化面积、微型双孔孔径、两小孔之间间...  相似文献   

10.
采用全矢量有限元方法进行光纤设计优化,得到横截面上失去两层空气洞的双芯光子晶体光纤,可用于液压传感.优化的双芯光子晶体光纤的模场半径和数值孔径与单模光纤基本一致,在优化的双芯光子晶体光纤和单模光纤之间有一个相对较低的熔接损耗.计算结果表明由模场半径和数值孔径导致的不匹配造成的总共损耗可低至0.026 dB,低于传统光子晶体光纤和单模光纤0.1 dB的直接熔接损耗.对基于20 cm双芯光子晶体光纤的液压传感器的性能进行研究,结果表明在0~500 MPa量程内的灵敏度为-1.6 pm/MPa.  相似文献   

11.
ABSTRACT

A novel mid-infrared Ge20Sb15Se65 chalcogenide-based single-polarization single-mode (SPSM) photonic crystal fiber (PCF) with rectangular latticed circular air holes is proposed. The properties of SPSM bandwidth, confinement loss, and nonlinearity are analyzed in the 3 μm~8 μm mid-infrared region using the finite -difference time-domain (FDTD) method. The influences of different geometrical parameters on the properties of SPSM-PCF are analyzed. All numerical computational results reveal that for the optimized geometrical parameters, the proposed PCF can deliver a SPSM region of more than 2.3814 μm with high nonlinearity of 3,705 w?1 km?1. Therefore, such a SPSM-PCF will become an excellent candidate for mid-infrared photonic.  相似文献   

12.
In this paper, a novel double-clad photonic crystal fiber (DC-PCF) is proposed for achieving both high birefringence and low leakage loss. According to numerical simulation of the proposed PCF, the extraordinarily high birefringence (over 2×10−2) and low leakage loss of the order of 0.0001 dB/km over a large wavelength range are achieved simultaneously. Single-polarization single-mode (SPSM) operation with low leakage loss is also discussed and can be realized and optimized in the PCF by adopting suitable structure parameters.  相似文献   

13.
A simple single-polarization single-mode (SPSM) photonic crystal fiber (PCF) coupler with two cores is introduced. The full-vector finite-element method (FEM) is applied to analyze the modal interference phenomenon of the even and odd modes of two orthogonal polarizations and the power propagation within the two cores. Meanwhile, the SPSM coupling wavelength range and its corresponding coupling length for different structure parameters are numerically analyzed. The numerical results show that SPSM coupling can be realized with a broad range of wavelength, and the coupling length can be of millimeter magnitude. Moreover, the SPSM coupling wavelength range and the coupling length can be optimized by designing proper mirco-structure parameters of the coupler.  相似文献   

14.
We report a novel design of photonic crystal fiber (PCF) with a rectangular array of four closely-spaced, highly elliptical air holes in the core region and a circular-air-hole cladding. The proposed PCF is able to support ultra-wideband single-polarization single-mode (SPSM) transmission from the visible band to the near infrared band. With the aid of the inner cladding formed by the central air holes, one polarization of the fundamental mode can be cut off at very short wavelengths and ultra-wideband SPSM propagation can be achieved. The inner cladding also suppresses the higher order modes and allows large air filling fraction in the outer cladding while the proposed fiber remains SPSM, which significantly reduces the mode effective area and the confinement loss. Our simulation results indicate that the proposed PCF has a 1540 nm SMSP range with <0.25 dB/km confinement loss and an effective area of 2.2 μm2. Moreover, the group velocity dispersion (GVD) of the proposed PCF can also be tuned to be flat and near zero at the near infrared band (∼800 nm) by optimizing the outer cladding structure, potentially enabling many nonlinear applications.  相似文献   

15.
The present paper proposes a novel design for achieving single-polarization single-mode (SPSM) operation at 1550 nm in photonic crystal fiber (PCF), using a rectangular-lattice PCF with two lines of three central air holes enlarged. The proposed PCF composed entirely of silica material is modeled by a full-vector finite element method with anisotropic perfectly matched layers. Simulations show that single-polarization operation within broad wavelength range can be easily realized with the proposed structure. The wideband SPSM operation features, the low confinement losses, and the small effective mode area are the main advantages of the proposed PCF structure. A SPSM-PCF with confinement loss less than 0.1 dB/km within wavelength range from 1370 to 1610 nm and effective mode area about 4.7 μm2 at 1550 nm is numerically demonstrated.  相似文献   

16.
光子晶体光纤由于其灵活可调的色散特性用作色散补偿具有极大的应用潜力. 设计了一种色散补偿光子晶体光纤, 并运用频域有限差分法模拟了其色散特性,从理论上分析了其结构参数孔间距Λ和空气占空比d/Λ对该光子晶体光纤的色散系数的影响, 并且实际制备出了3种不同结构参数的光子晶体光纤. 通过对其色散曲线对比分析表明: 当光子晶体光纤孔间距在1 μm附近时, 其色散系数随着孔间距Λ和占空比d/Λ的增大而增加, 但对于孔间距Λ的变化比占空比d/Λ更为敏感, 并且随着孔间距Λ的增加,其对色散系数的影响能力逐渐减小. 设计并制备的光子晶体光纤在1550 nm处的色散系数为-241.5 ps·nm-1·km-1, 相对色散斜率为0.0018, 具有较好的色散补偿能力. 关键词: 色散 色散补偿 光子晶体光纤 结构参数  相似文献   

17.
柏宁丰  洪玮  孙小菡 《物理学报》2011,60(1):18401-018401
提出了一种复合缺陷型电磁带隙(EBG)谐振腔,通过对该EBG结构的带隙分析,指出该谐振腔可在大尺寸下实现单模工作,提供更大的容差空间,且具有高Q值.数值模拟结果表明,基于复合缺陷EBG结构构成的谐振腔,单模工作条件可以放宽到外圈金属柱直径与周期之比为0.6,内圈金属柱直径与周期比为0.9;而传统中心缺陷型EBG结构的小于0.3. 关键词: 电磁带隙 复合缺陷 谐振腔 单模  相似文献   

18.
张方迪  刘小毅  张民  叶培大 《物理学报》2006,55(12):6447-6453
提出了一种空气孔长方形排列的单偏振光子晶体光纤结构,并利用基于棱边/节点混合元的带有完全匹配层吸收边界条件的全矢量有限元方法对该结构进行了分析.对设计思路进行了详细说明.通过优化结构参数在理论上获得了波长在1.38—1.61 μm范围内仅有慢轴模且限制损耗低于0.1 dB/km的单模单偏振操作. 关键词: 光子晶体光纤 单偏振 限制损耗 全矢量有限元方法  相似文献   

19.
A novel photonic crystal fiber (PCF) based on a four-hole unit is proposed in order to meet the requirements of high birefringence, negative dispersion and confinement loss in fiber-optic communication. The proposed design has been simulated based on the full vector finite element method (FVFEM) and anisotropic perfectly matched layers (APML). Analysis results show that the proposed PCF can achieve a high birefringence to the order of 10−2 at the wavelength of 1.55 μm, a large negative dispersion over a wide wavelength range and confinement losses lower than 10−9 dB/m simultaneously, which has important applications in polarization-maintaining (PM) fibers, single-polarization single-mode (SPSM) fibers, dispersion compensation fibers and so on.  相似文献   

20.
A new high negative dispersion photonic crystal fiber is proposed. It has double-core structure. The inner core has a circle germanium-doped region. The outer core is formed by removing the 3rd ring air-holes around the core. There are two ring air-holes between the two cores, Diameter of the 1st ring air holes is bigger than that of the 2nd ring air-holes, this can make mode coupling between inner mode and outer mode and showed that the high negative PCF is the result of this structure characteristics. There are honeycomb photonic lattice in the PCF's cladding. The influence of the structure parameters deviated from the design those on the chromatic dispersion are evaluated. When the structure parameters Λ=1.50 μm, dcore=2.10 μm, d1=0.90 μm, d2=0.44 μm and d3=1.04 μm, the dispersion coefficient D is −1320 ps/(nm·km) at 1550 nm. This is a new kind of chromatic dispersion compensation PCF.  相似文献   

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