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1.
实现了使用光子带隙光纤的一体化谐振式光纤陀螺方案,设计并制作了谐振腔中基于微光学结构的耦合器。实验测得制作的谐振腔清晰度为3.7。搭建了基于该谐振腔的陀螺系统,并对其主、次偏振态的谐振曲线进行了实际测量。实验结果测得该系统60 s零漂为2.45 ()/s,及1 h长期稳定性为7.11 ()/s。同时,实现了对应陀螺输出50 ()/s(积分时间10 s)及100 ()/s(积分时间10 s)的模拟转速实验,验证了该陀螺系统的Sagnac效应。分析得到耦合损耗是影响该陀螺系统性能的主要因素。验证了该谐振腔结构具有应用于陀螺系统的可行性,为谐振式光纤陀螺性能进一步提高提供了参考。  相似文献   

2.
实现了使用光子带隙光纤的一体化谐振式光纤陀螺方案,设计并制作了谐振腔中基于微光学结构的耦合器。实验测得制作的谐振腔清晰度为3.7。搭建了基于该谐振腔的陀螺系统,并对其主、次偏振态的谐振曲线进行了实际测量。实验结果测得该系统60s零漂为2.45(°)/s,及1h长期稳定性为7.11(°)/s。同时,实现了对应陀螺输出±50(°)/s(积分时间10s)及±100(°)/s(积分时间10s)的模拟转速实验,验证了该陀螺系统的Sagnac效应。分析得到耦合损耗是影响该陀螺系统性能的主要因素。验证了该谐振腔结构具有应用于陀螺系统的可行性,为谐振式光纤陀螺性能进一步提高提供了参考。  相似文献   

3.
程兰  罗兴  韦会峰  李海清  彭景刚  戴能利  李进延 《物理学报》2014,63(7):74210-074210
全固态光子带隙光纤由于其独特的带隙和色散特性以及易于和传统光纤熔接的优势,引起了国内外研究人员的广泛关注.本文采用等离子体化学气相沉积工艺结合堆叠拉制法制备了全固态光子带隙光纤,并运用频域有限差分法模拟了其损耗和色散特性.该光纤1550 nm处有较低损耗且单模传输,计算得到1550 nm处的有效模场面积和色散分别为191.81μm2和16.418 ps/(km·nm),在测试范围1500—1650 nm内损耗小于0.15 dB/m.结合实验结果,对光纤参数做了进一步模拟优化.  相似文献   

4.
5.
通过向折射率引导型光子晶体光纤的空气孔中填充可调的高折射率的材料可以获得带隙可调的光子带隙光纤.本文采用矢量平面波展开法与矢量有限元法对可调光子带隙光纤的泄漏损耗特性进行了理论研究.研究表明,这种可调光子带隙光纤的光子带隙效应使其泄漏损耗与填充材料的折射率有很强的依赖关系,同时给出了光子带隙光纤的泄漏损耗和群速度色散与归一化波长的关系.  相似文献   

6.
田中俊 《光谱实验室》2010,27(4):1469-1472
应用平面波展开法数值模拟得到了光子晶体光纤带隙特性,为光子晶体光纤器件的开发提供了理论依据。  相似文献   

7.
首次研制出一种第一带隙从~450nm到900 nm的新型全固态光子带隙光纤,结构如图1(a).包层中掺锗玻璃线外面围有一层掺氟玻璃环,这种设计可以增强对传导光的限制,并提高弯曲特性.  相似文献   

8.
提出并研究了空芯光子带隙光纤中表面模共振耦合效应和高温传感特性.实验上观测到光子带隙光纤中的表面模耦合效应,理论上诠释了该效应的产生原理.通过表面模耦合效应,对在光纤透射光谱中形成的多个共振峰进行温度和应变传感实验,观察到独特的温度和应变传感特性:共振峰在20~150℃之间低温不敏感,在150~260℃之间高温强度敏感...  相似文献   

9.
栗岩锋  胡晓堃  王爱民 《物理学报》2011,60(6):64212-064212
设计了基于断环结构的全固光子带隙光纤,其背景材料为熔石英而断环结构由若干掺杂的高折射率介质柱构成.基于平面波展开法计算得到的态密度图和Bloch模场分布表明,该种光纤中的一个高阶带隙可以得到调节并被极大展宽,带隙调节的基本原理是断环可以同时控制包层介质柱的线偏振模式的角向和径向模式阶数.研究表明,断环中的介质柱数目决定了受影响最小的一组线偏振模式的最高角向阶数,而带隙宽度受介质柱尺寸影响很大.这一宽的高阶带隙可以用来设计带隙中心分别在800和1550 nm、带宽分别为488和944 nm的全固光子带隙光纤 关键词: 全固光子带隙光纤 光子带隙 光纤设计 平面波展开法  相似文献   

10.
利用多极法计算了全固态光子带隙光纤第1带隙内不同波长处的基模模场分布,得到2维归一化光强分布特性.由于该光纤具有三角形(C<,6v>)的对称结构,影响了光纤内的模场分布,为此计算了该结构两个具有代表性的方向上的模场分布,分析了带隙内两个不同的结构方向上的模场分布特性.结果表明.在长波长区域,两个方向上的模场半径并不相等,但都随波长的增加而减小,其变化规律与全内反射导光的光纤不同.  相似文献   

11.
All-solid photonic bandgap fiber   总被引:2,自引:0,他引:2  
We describe the design and fabrication of a photonic bandgap fiber formed with two different glasses. As in a hollow-core fiber, light is guided in a low-index core region because of the antiresonances of the high-index strands in the fiber cladding. The structure described represents an ideal bandgap fiber that exhibits no interface modes and guides over the full width of multiple bandgaps.  相似文献   

12.
Hollow-core photonic bandgap fiber polarizer   总被引:1,自引:0,他引:1  
Xuan HF  Jin W  Ju J  Wang YP  Zhang M  Liao YB  Chen MH 《Optics letters》2008,33(8):845-847
Broadband, compact in-fiber polarizers were fabricated using a pulsed CO(2) laser to modify the air holes along one side of the hollow-core photonic bandgap fibers. The polarizers have lengths from 3 to 6 mm and exhibit a polarization extinction ratio of better than 20 dB over a wavelength range larger than 100 nm at approximately 1,550 nm.  相似文献   

13.
Ren G  Shum P  Zhang L  Yu X  Tong W  Luo J 《Optics letters》2007,32(9):1023-1025
We report the fabrication and characterization of a new type all-solid photonic bandgap fiber. By introducing an index depressed layer around the high-index rod in the unit cell of photonic crystal cladding, transmission loss as low as 2 dB/km within the first bandgap is realized for the all-solid photonic bandgap fiber with a bandwidth of over 700 nm. The bend loss experiment shows that the photonic bandgap fiber is much less bend sensitive than single-mode fiber.  相似文献   

14.
S.S. Mishra 《Optik》2011,122(8):687-690
A highly non-linear hollow core photonic crystal fiber (PCF) having three ring-hexagonal structure is designed. The full vector finite element method with perfectly matched layer is used to investigate the non-linear properties of hollow core PCF effectively. The effective area of modal pattern is also studied for the same newly designed structure. It is found that when effective area is very small the non-linearity is very high.  相似文献   

15.
Wang A  George AK  Knight JC 《Optics letters》2006,31(10):1388-1390
We report a neodymium fiber laser incorporating an all-solid photonic bandgap fiber to suppress the four-level laser transition 4F(3/2)-4I(11/2). We demonstrate lasing at 907 nm on the three-level transition 4F(3/2)-4I(9/2) when pumping at 808 nm. The maximum slope efficiency obtained was 32% with a threshold pump power of 70 mW.  相似文献   

16.
We report on a mode-locked all-normal dispersion fiber laser featuring a large-mode-area all-solid photonic bandgap fiber. The self-starting chirped-pulse laser delivers 660 mW of average power at a repetition rate of 30 MHz, leading to 22?nJ energy. The output pulses are dechirped outside the cavity to nearly transform-limited duration of 50?fs. Numerical simulations are in good agreement with experiments and highlight the key role of passive spectral filtering on pulse shaping.  相似文献   

17.
Effect of Raman scattering and higher order dispersion are investigated in case of surface core or gap solitons, known to exist in hollow core photonic crystal fibers. The necessary conditions for the existence of the soliton are analyzed in the parameter plane. It is observed that these conditions are compatible with the famous Vakhitov-Kolokolov (VK) criterion. In the later part the system of partial differential equations are solved by ETDRK method from which the shapes of the pulses are investigated as it travels along the z direction. Both the terms, intrapulse Raman scattering and higher order dispersion have important effect on the propagation characteristics  相似文献   

18.
We investigate both experimentally and numerically confinement and bend losses in solid-core photonic bandgap fibers. We proposed two designs, based on the addition of air regions in the cladding, allowing these losses to be reduced significantly while keeping the optical properties of bandgap fibers. We also present and discuss numerical results on the impact of transversal defects on the fiber confinement loss in the case of a realistic low loss fiber.  相似文献   

19.
Design of air-guiding honeycomb photonic bandgap fiber   总被引:1,自引:0,他引:1  
Yan M  Shum P  Hu J 《Optics letters》2005,30(5):465-467
We introduce a design procedure for hollow-core photonic bandgap (PBG) fiber with a cladding made of air-silica honeycomb photonic crystal (PC). It is found that air-guiding can be realized in both fundamental and secondary PBG regions of the cladding PC. Dispersion and radiation loss of the fundamental mode for two types of fiber structure are theoretically calculated. The fibers show promising waveguiding ability.  相似文献   

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