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Design of a coated thinly clad chalcogenide long-period fiber grating refractive index sensor based on dual-peak resonance near the phase matching turning point 下载免费PDF全文
A novel method for designing chalcogenide long-period fiber grating (LPFG) sensors based on the dual-peak resonance effect of the LPFG near the phase matching turning point (PMTP) is presented. Refractive index sensing in a high-refractive-index chalcogenide fiber is achieved with a coated thinly clad film. The dual-peak resonant characteristics near the PMTP and the refractive index sensing properties of the LPFG are analyzed first by the phase-matching condition of the LPFG. The effects of film parameters and cladding radius on the sensitivity of refractive index sensing are further discussed. The sensor is optimized by selecting the appropriate film parameters and cladding radius. Simulation results show that the ambient refractive index sensitivity of a dual-peak coated thinly clad chalcogenide LPFG at the PMTP can be 2400 nm/RIU, which is significantly higher than that of non-optimized gratings. It has great application potential in the field of chemical sensing and biosensors. 相似文献
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采用磁控溅射法制备了不同Cu含量的Cu-Ge3Sb2Te5薄膜, 原位测试了薄膜电阻与温度的关系, 并利用X射线衍射仪、透射电镜、透过和拉曼光谱仪分别研究了 Cu-Ge3Sb2Te5薄膜的晶体结构、微结构、禁带宽度及成键情况. 结果表明, Cu-Ge3Sb2Te5薄膜的结晶温度和结晶活化能随着Cu含量的增加而增大, Cu的加入有效改善Ge3Sb2Te5薄膜的热稳定性和10年数据保持力. 随着Cu含量的增加, 非晶态Cu-Ge3Sb2Te5薄膜的禁带宽度逐渐减小. 同时, 拉曼峰从129 cm-1向127 cm-1处移动, 这是由于Cu–Te极性键振动增强的缘故. Cu-Ge3Sb2Te5结晶为均匀、相互嵌套的六方Cu2Te和Ge2Sb2Te5相. 相似文献
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采用原位X射线衍射仪、拉曼光谱仪和X射线反射仪分别研究了Cu-Sb2Te 薄膜的微结构、成键结构和结晶前后的密度变化. Sb2Te薄膜的结晶温度随着Cu含量的增加而增大. 在10 at.%和14 at.% Cu的Sb2Te薄膜中, Cu与 Te 成键, 结晶相由六方相的Cu7Te4、菱形相的Sb及六方相的Sb2Te构成. 10 at.% 和14 at.% Cu 的Sb2Te薄膜在结晶前后的厚度变化分别约为3.2%和 4.0%, 均小于传统的Ge2Sb2Te5 (GST)薄膜. 制备了基于Cu-Sb2Te薄膜的相变存储单元, 并测试了其器件性能. Cu-Sb2Te器件均能在10 ns的电脉冲下实现可逆SET-RESET操作. SET和RESET操作电压随着Cu含量的增加而减小. 疲劳测试结果显示, Cu 含量为10 at.%和14 at.%的PCRAM单元的循环操作次数分别达到1.3×104和1.5×105, RESET和SET态的电阻比值约为100. Cu-Sb2Te可以作为应用于高速相变存储器(PCRAM)的候选材料. 相似文献
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A low-threshold multiwavelength Brillouin fiber laser with double-frequency spacing based on a small-core fiber 下载免费PDF全文
We demonstrate multiwavelength Brillouin fiber lasers (MWBFLs) with double-frequency spacing based on a small-core fiber (SCF) and a standard single-mode fiber (SMF), which have core diameters of 5 and 8.8 μm, respectively. Experimental results show that the SCF-based MWBFL exhibits a higher laser output power and a lower pump threshold. The output powers of the SCF-based MWBFL are > 1.4 times those of the SMF-based MWBFL. Moreover, the threshold power required to generate each channel of the SCF-based MWBFL is 59% that of the SMF-based MWBFL. When the same pump power of 180 mW is injected, the number of laser channels generated for the SCF-based MWBFL is 13, which is twice that generated for the SMF-based MWBFL. In addition, the SCF-based MWBFL exhibits good wavelength tunability from 1535 to 1565 nm and temporal stability over an hour. 相似文献
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在利用多极法优化设计光子晶体光纤结构的基础上, 充分结合挤压和堆积两种方法的优点, 提出了基于挤压-堆积的新型硫系光子晶体光纤制备技术, 利用As2S3硫系玻璃制备了三层孔环结构光子晶体光纤. 通过理论模拟分析得出了该光纤的色散特性和零色散点, 测试了1550nm近红外光纤激光在该光纤中的传输效果和纤芯光斑能量分布, 利用该光斑测试验证了该光纤在近红外的光能传输局部限制能力和光子晶体的光学初步控制现象. 相似文献
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用熔融急冷法制备了系列不同Er3+离子掺杂浓度的Ge-Ga-S-KBr硫卤玻璃,测试了样品折射率、吸收光谱、中红外荧光光谱。通过吸收光谱计算了Er3+离子吸收谱线的振子强度,应用Judd-Ofelt理论计算分析了Er3+离子在Ge-Ga-S-KBr硫卤玻璃中的强度参数Ωi ( i = 2 , 4 , 6) 、自发辐射跃迁几率A、荧光分支比?和辐射寿命?rad等光谱参数。研究了808nm激光泵浦下样品中红外荧光特性与掺杂浓度之间变化关系,并用Futchbauer-Ladenburg公式分别计算了2.8?m处的受激发射截面。结果表明,在808nm 激光泵浦下观察到了2.8?m中红外荧光,分别对应于Er3+: 4I11/2?4I13/2跃迁,当Er3+离子掺杂浓度从0.4wt%增加到1.0wt%时,中红外荧光强度都随相应增加,计算的Er3+:4I11/2?4I13/2跃迁多声子驰豫速率分别为37 s-1。 相似文献
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采用粉料漂浮高温熔融法自制Nd3+掺杂硫系玻璃微球,研究了腔量子电动力学增强效应对稀土掺杂硫系玻璃微球荧光光谱的影响。把直径90.53μm的硫系玻璃微球与锥腰直径1.02μm的石英光纤锥耦合,将808nm抽运激光导入微球,荧光光谱存在分立的共振峰。根据米氏散射理论公式,计算得到TE偏振态下基模的三个共振峰位置,确定了这三个共振峰的模式序数。增强因子η≈1122,这表明微球荧光自发辐射速率增强幅度为1122倍。在基模条件下对原增强因子公式进行近似化简,并利用近似公式进行估算得到η≈1167,误差为4%。 相似文献
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Nd~(3+)-doped tellurite glass and a single mode tellurite glass fiber with a core diameter of 8 μm were prepared in this work. The 1.33-μm emission from the ~4F_(3/2)→~4I_(13/2) transition of Nd~(3+) with a spectral bandwidth of 55 nm in tellurite glass fiber is observed. The lifetime of 164 μs of ~4F_(3/2) level and quantum efficiency of about 100% are obtained. 相似文献