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1.
硫系玻璃与石英玻璃相比具有高折射率(2.0~3.5)、低声子能量 (<350 cm-1)、优良的中远红外透过性能(可至25 μm)等特性.本文制备了一种在中红外具有优良透过特性的无As环保型Ge20Sb15Se65硫系玻璃材料,以此为基质材料设计了一种三层空气孔结构光子晶体光纤,利用多极法对光纤的中红外色散特性进行了数值模拟,系统研究了结构参量孔径d、孔间距Λ 以及d/Λ 对其色散特性的影响.分析表明:通过改变包层空气孔直径d或空气孔间距Λ,可灵活的调节光子晶体光纤的零色散波长向短波或长波方向移动.通过优化结构参量发现,当Λ=3 μm,d/Λ=0.35 附近变化时,可获得3~5 μm色散平坦,且色散值小于5 ps·nm-1·km-1的光子晶体光纤.  相似文献   

2.
周亚训  於杏燕  徐星辰  戴世勋 《物理学报》2012,61(15):157701-157701
为进一步揭示硫系玻璃基掺Er3+微结构光纤对于中红外波段信号的放大特性, 采用熔融淬火法研制了Er3+离子掺杂的Ga5Ge20Sb10S65硫系玻璃, 测试了玻璃样品的吸收光谱和2.7 μm波段荧光光谱, 利用Judd-Ofelt和Futchbauer-Ladenburg理论分别计算得到了Er3+离子的辐射跃迁概率、辐射寿命以及2.7 μm波段受激发射截面. 在此基础上, 建立了一个980 nm抽运下该玻璃基掺Er3+微结构光纤2.7 μm波段中红外信号的放大模型, 理论上研究了其作为2.7 μm波段中红外信号增益介质时的光放大特性. 结果显示, 硫系玻璃基掺Er3+微结构光纤具有优异的高增益和宽带放大品性. 在200 mW抽运功率激励下的100 cm光纤长度上, 最大小信号增益超过了40 dB, 高于30 dB信号增益的放大带宽达到了120 nm (2696—2816 nm). 研究表明, Ga5Ge20Sb10S65硫系玻璃基掺Er3+微结构光纤是一种理想的可应用于2.7 μm波段中红外宽带放大器的增益介质.  相似文献   

3.
王伟  杨博 《物理学报》2012,61(6):64601-064601
针对光子晶体光纤多零色散点、高双折射的应用要求, 设计了一种新型结构的光子晶体光纤, 其纤芯由位于菱形四个角上的圆形空气孔组成. 通过有限元数值分析方法对该种结构光子晶体光纤的色散特性和双折射特性进行数值仿真, 得到色散与波长、色散与纤芯圆孔尺寸、双折射与波长、双折射与纤芯圆孔尺寸的关系. 研究结果表明:在满足光纤传输功率要求的条件下, 光纤的双折射在d1<0.8 μupm 时的性能较好. 同时, 该种结构的光子晶体光纤在芯区直径满足d1=0.4 μupm或 d1=0.6 μupm时会出现两个零色散点, 这对进一步研制具有多零色散点的光子晶体光纤具有重要的意义.  相似文献   

4.
低损耗低非线性高负色散光子晶体光纤的优化设计   总被引:1,自引:0,他引:1       下载免费PDF全文
张亚妮 《物理学报》2012,61(8):84213-084213
设计了一种同轴双芯六角点阵光子晶体光纤, 该光纤中心缺失一根空气柱形成内纤芯, 通过减小第4环空气孔的直径形成外纤芯. 采用全矢量有限元法并结合各向异性完美匹配层边界条件, 对其色散、非线性、约束损耗和模场等特性进行了数值模拟. 结果发现, 该光纤呈现高负色散可调效应和较强的模场约束能力, 约束损耗接近10-2 dB· m-1. 调整光纤结构参数(即空气孔间隔Λ, 小孔直径d1和相对孔间隔比f), 可以控制其高负色散工作波长. 若调整光纤结构参数Λ=1.2 μ, f=0.917, d1=0.515 μm时, 该光纤在低损耗通信窗口C波段呈现负色散和负色散斜率, 其色散斜率在-1----6 ps· km-1nm-2范围内波动, 在波长1.55 μm处负色散值为-3400 ps· km-1nm-1, 模场面积高达43 μm2, 非线性系数仅有3.6 km-1W-1. 该光纤在C波段呈现的低损耗低非线性高负色散特性, 具有很好的色散补偿能力, 将在长距离大容量 高功率高速光通信系统中获得很好的应用.  相似文献   

5.
王伟  杨博 《物理学报》2012,61(2):064601
针对光子晶体光纤多零色散点、高双折射的应用要求, 设计了一种新型结构的光子晶体光纤, 其纤芯由位于菱形四个角上的圆形空气孔组成. 通过有限元数值分析方法对该种结构光子晶体光纤的色散特性和双折射特性进行数值仿真, 得到色散与波长、色散与纤芯圆孔尺寸、双折射与波长、双折射与纤芯圆孔尺寸的关系. 研究结果表明:在满足光纤传输功率要求的条件下, 光纤的双折射在d1<0.8 μupm 时的性能较好. 同时, 该种结构的光子晶体光纤在芯区直径满足d1=0.4 μupm或 d  相似文献   

6.
硫系光纤的色散测量   总被引:4,自引:1,他引:3  
利用相移测量了单模As2 S3 光纤在 1 5 5 μm附近的色散。测量结果显示 ,As2 S3 光纤的材料色散为- 39ps/ (km·nm)。特殊的色散特性 ,预示了硫系光纤及其器件广阔的应用前景。  相似文献   

7.
本文基于第一性原理计算,预测了二维SnP3层作为新型半导体材料,具有0.71 eV(单层)和1.03 eV(双层)的间接带隙,这与体结构的金属特性不同. 值得注意的是,2D SnP3具有9.171×104 cm2?V-1?s-1的高空穴迁移率和对于整个可见光谱的高光吸收(∽106 cm-1),这预示2D SnP3层有望成为纳米电子学和光电子学的候选材料. 有趣的是,本文发现2D SnP3双层具有与硅类似的电子和光学特性. 考虑到硅基微电子和光伏技术的巨大成功,本文的研究结果将有助于纳米领域的相关研究.  相似文献   

8.
针对稀土Er掺杂Si光源中Er离子掺杂浓度低的问题,采用溶胶-凝胶(Sol-gel)法在Si(100)和SiO2/Si(100)基片上旋涂法制备Er2O3光学薄膜,Er离子浓度与以前掺杂方法相比提高了2个数量级.900 ℃热处理获得单一立方结构的Er2O3薄膜材料.光致发光(PL)特性研究表明在654 nm波长的激光泵浦下,Er2O3薄膜材料获得了1.535 μm的发光峰,并具有较小的温度猝灭1/5.在SiO2/Si(100)基体上制备的Er2O3薄膜材料的光致发光强度比Si(100)基体上制备的薄膜提高2-3倍.研究结果表明具有强光致发光特性的Er2O3薄膜是一种有前景的硅基光源和放大器材料.  相似文献   

9.
王伟  杨博  宋鸿儒  范岳 《物理学报》2012,61(14):144601-144601
针对光纤通信和传感系统中高双折射、多零色散点的应用需求, 设计了一种新型结构的光子晶体光纤.该结构包层为圆形空气孔按照八边形形状排列而成, 并在内包层对称位置中加入两个椭圆空气孔以获得高双折射特性. 通过有限元数值分析方法对光纤特性进行分析,仿真结果表明,该结构光子晶体光纤在波长0.8—2 μm 范围内双折射可达10-3量级,满足高双折射的应用需求,并且满足两个零色散点的应用需求. 同时光纤的非线性系数达10-2·m-1·W-1量级,可应用于对非线性要求较高的场合.  相似文献   

10.
Ge20Sb15Se65硫系玻璃光子晶体光纤的中红外色散特性   总被引:1,自引:1,他引:0  
硫系玻璃与石英玻璃相比具有高折射率(2.0~3.5)、低声子能量(<350cm-1)、优良的中远红外透过性能(可至25μm)等特性.本文制备了一种在中红外具有优良透过特性的无As环保型Ge20Sb15Se65硫系玻璃材料,以此为基质材料设计了一种三层空气孔结构光子晶体光纤,利用多极法对光纤的中红外色散特性进行了数值模拟,系统研究了结构参量孔径d、孔间距Λ以及d/Λ对其色散特性的影响.分析表明:通过改变包层空气孔直径d或空气孔间距Λ,可灵活的调节光子晶体光纤的零色散波长向短波或长波方向移动.通过优化结构参量发现,当Λ=3μm,d/Λ=0.35附近变化时,可获得3~5μm色散平坦,且色散值小于5ps.nm-1.km-1的光子晶体光纤.  相似文献   

11.
王晓琰  李曙光  刘硕  张磊  尹国冰  冯荣普 《物理学报》2011,60(6):64213-064213
设计了一种中红外As2S3光子晶体光纤,利用多极法研究了这种光纤的双折射、色散和非线性特性.数值研究发现,该光纤在中红外波段λ = 3.625 μm处双折射B高达0.098;其x偏振方向的非线性系数γx达到了1.69 m-1 ·W-1, y偏振方向的非线性系数γy达到了0.78 m- 关键词: 光子晶体光纤 中红外波段 双折射 非线性  相似文献   

12.
Near-infrared luminescence is observed from bismuth-doped GeS2-Ga2Sa chalcogenide glasses excited by an 808 nm laser diode. The emission peak with a maximum at about 1260 nm is observed in 80GeS2-2OGa2 Sa:O.fBi glass and it shifts toward the long wavelength with the addition of Bi gradually. The full width of half maximum (FWHM) is about 200 nm. The broadband infrared luminescence of Bi-doped GeS2-Ga2Sa chalcogenide glasses may be predominantly originated from the low valence state of Bi, such as Bi+. Raman scattering is also conducted to claxify the structure of glasses. These Bi-doped GeS2 Ga2Sa chalcogenide glasses can be applied potentially in novel broadband optical fibre amplifiers and broadly tunable laser in optical communication system.  相似文献   

13.
本文以自制Ge20Sb15Se65硫系玻璃为基质材料,设计一种正八边形结构色散平坦型中红外硫系光子晶体光纤,并采用多极法对其中红外色散和传输特性进行数值研究.结果表明:控制该光纤占空比(d/Λ)在0.323—0.367之间,其色散及传输特性在3—5μm范围内可调.当孔间距Λ=3.4μm,孔直径d=1.1μm时,光纤在4.1—4.9μm波段的色散值在0.8—0.8 ps·nm 1·km 1波动,且具备单模低损耗传输(Loss0.049dB/m),小模场面积(Aeff8.46μm2)特性,适合于中红外非线性应用领域.  相似文献   

14.
In this article, a new simplified structure of a highly birefringent chalcogenide As2Se3 glass photonic crystal fiber (PCF) is designed and analyzed by using fully vectorial finite element method. The effective indices, confinement loss, birefringence, and chromatic dispersion of fundamental polarized mode are calculated in the proposed PCF for a wide wavelength range. To maintain the polarization in chalcogenide As2Se3 glass PCF, we enlarged two of the central air holes and reduced two transverse air holes for achieving high birefringence. This helps in creating an effective index difference between the two orthogonal polarization modes. It is also shown that As2Se3 glass PCF provides lower chromatic dispersion and less confinement loss compared to silica PCF of the same structure in wavelength range 1.3 to 1.8 μm and hence such chalcogenide As2Se3 glass PCF have high potential to be used in dispersion compensating and birefringence application in optical communication systems. In addition to this, the polarization mode dispersion (PMD) result of the proposed PCF is also reported.  相似文献   

15.
A novel kind of As2Se3 chalcogenide glass multi-ring photonic crystal fiber is proposed. The characteristics of multi-ring photonic crystal fiber have been studied by the finite element method. Compared with another two kinds of single-core photonic crystal fibers, the multi-ring PCF can make the perfect combination of the effective mode area, the nonlinearity coefficient and multi-zero dispersion. It can achieve high power supercontinuum generation in middle infrared band; It also can be used in high-power pulsed laser fiber amplifier and high-power ultra-short pulse laser transmission in far infrared band.  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.
In this paper, a new hybrid microstructured optical fiber (H-MOF) based upon photonic bandgap (PBG) light guiding mechanism which can be used for dispersion compensation in optical transmission systems is designed and simulated. The H-MOF core is made up of silica glass and the holes in the cladding network are filled with As2Se3 chalcogenide glass. By selecting an appropriate geometrical parameters for the structure, the dispersion and confinement losses of the proposed H-MOF at 1.55 µm are calculated to be ?6700 ps/nm/km and 6?×?10?4 dB/m, respectively. Relative dispersion slope (RDS) of the H-MOF at 1.55 µm is about 0.00347 nm?1. The proposed H-MOF is suitable for use in wavelength division multiplexing and dispersion compensating systems in optical fiber transmission networks.  相似文献   

18.
In this paper, we report a chalcogenide As2Se3 glass photonic crystal fiber (PCF) for dispersion compensating application. We have used the improved fully vectorial effective index method (IFVEIM) for comparing the dispersion properties (negative and zero dispersion) and effective area in hexagonal and square lattice of As2Se3 glass PCF using different wavelength windows. It has been demonstrated that due to their negative dispersion parameter and negative dispersion slope in wavelength range 1.2-2.5 μm, both lattice structures of As2Se3 glass PCFs, with pitch (Λ = 2 μm), can be used as dispersion compensating fibers. Further, design parameters have been obtained to achieve zero dispersion in these fibers. It is also shown that As2Se3 glass PCF provides much higher negative dispersion compared to silica PCF of the same structure, in wavelength range 1.25-1.6 μm and hence such PCF have high potential to be used as a dispersion compensating fiber in optical communication systems.  相似文献   

19.
We demonstrate the supercontinuum (SC) generation in a four-hole As2S5 chalcogenide microstructured optical fiber (MOF) experimentally. The As2S5 glass has better property of transmission than As2S3 glass in the visible range. The four-hole As2S5 MOF is fabricated by a rod-in-tube method. The SCs generated by different pump wavelengths at 2,000, 2,300 and 2,500 nm in the MOF whose length is from 2.3 to 20 cm are demonstrated. Those pump wavelengths correspond to the chromatic dispersion wavelength in the normal chromatic dispersion region, the anomalous chromatic dispersion region close to zero-dispersion wavelength (ZDW) and the anomalous chromatic dispersion region far from ZDW, respectively. Wider SCs can be obtained when pumped at a wavelength in the anomalous dispersion region close to ZDW. The widest SC range of 4,280 nm (from 1,370 to 5,650 nm) covering two octaves was obtained in a 4.8-cm-long fiber pumped at 2,300 nm.  相似文献   

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