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采用传统熔体冷却法制备添加不同质量分数(0~3.0%)Bi_2O_3的SiO_2-Al_2O_3-MgO系玻璃,研究Bi_2O_3添加量对玻璃热稳定性、结构稳定性以及物理与力学性能的影响。结果表明:添加Bi_2O_3可有效降低玻璃的软化点;随着Bi_2O_3添加量的增加,玻璃析晶温度与玻璃化转变温度之差先增大后减小,光学带隙先减小后增大,说明玻璃的热稳定性和结构稳定性先提高后降低,同时玻璃的密度、弯曲强度、压缩强度和压缩模量也呈先增大后降低的趋势;当Bi2O3的质量分数为1.5%时,玻璃的结构稳定性、热稳定性、物理与力学性能最优异,此时玻璃析晶温度与玻璃化转变温度之差为244K,光学带隙为3.50eV,密度为2.67g·cm~(-3),弯曲强度为82.72 MPa,压缩强度为236.24MPa,压缩模量为110.06GPa。 相似文献
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采用传统熔体冷却法制备TiO2掺杂量(物质的量分数)为0~5.0%的CaO-Al2O3-SiO2(CAS)系玻璃,研究了TiO2掺杂量对该玻璃微观结构、热稳定性、弯曲强度的影响规律。结果表明:TiO2在CAS系玻璃网络中主要以[TiO5]单元的形式存在,随着TiO2掺杂量的增加,玻璃中的[TiO5]单元和Ti-O-Si键数量先增加后降低,玻璃网络中的桥氧数量先增多后减少,玻璃的光学带隙先增大后减小,且均在TiO2掺杂量为4.0%时达到最大值;随着TiO2掺杂量的增加,CAS系玻璃的热稳定性和弯曲强度均先提高后降低,当TiO2掺杂量为4%时综合性能最好,此时玻璃化转变温度、弯曲强度和光学带隙分别为798.24℃,95.58 MPa, 3.75 eV。 相似文献
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提出一种脉冲位置调制光标记(PPM)与正交幅度调制(QAM)净荷相结合的光标记交换系统。利用仿真对携带40Gbit/s 16QAM净荷和2.5Gbit/s 2PPM标记的系统传输特性进行验证。通过优化系统频率间隔,得到BER=10-9时,标记和净荷的接收灵敏度与光信噪比(OSNR)分别为-28.51dBm/13.65dB和-22.03dBm/15.02dB。经96km光纤传输后,传输代价均未超过1.5dB。结果证明:16QAM/2PPM光标记交换系统具备良好的传输特性。 相似文献
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A new optical label switching system with coherently detected implicit spectral amplitude code (SAC) labels is proposed in this paper. The implicit SAC labels are recognized using a frequency-swept local light source oscillator. An explicit SAC-label switching system with 40 Gbit/s intensity modulation (IM) payloads and 156 Mbit/s label and an implicit SAC-label switching system with 2.5 Gbit/s IM payloads and 156 Mbit/s label are both considered. Label and payload bit error rate (BER) performance is assessed and compared by simulations. The results reveal that after 80 km transmission and at the BER of 10-9, the received optical power (ROP) values of label and payload are -8.3 dBm and -23.5 dBm in implicit SAC-label switching system, respectively, while those are -18.2 dBm and -18.6 dBm in explicit SAC-label switching system, respectively. As a result, the payloads of 40 Gbit/s and 2.5 Gbit/s in explicit/implicit SAC-label switching system have little influence on the received payload quality at the BER of 10-9 after 80 km transmission. Finally, a payload of 40 Gbit/s can obtain 12.5 dB optical signal-to-noise ratio (OSNR) after 80 km transmission. 相似文献
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