1. A new chalcogenide glass system containing higher content of alkali metal ions was developed.
开发了有高含量碱金属离子的新型硫化物玻璃。
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2. In this paper, it was studied on the dispersion characteristics of chalcogenide fiber in detail.
本文对目前红外光纤研究的热点-硫系光纤独特的色散特性进行理论分析。
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3. Chalcogenide glasses are novel materials with very intriguing properties for a variety of photonic applications.
而硫系玻璃正是一种有着许多迷人性能的新型光学材料。
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4. This method is simple and convenient, and provides a new way to make chalcogenide films, but need to be improved.
该方法简单方便,为制作硫系玻璃薄膜提供了新思路,但还需要进一步完善。
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5. Passive applications of chalcogenide glass fibers in the infrared are described specifically for optical sensing of chemical species.
并具体阐述了硫系玻璃光纤在红外波段的被动化学传感应用。
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6. The chemical composition, characteristic temperatures and optical transmission spectra of fluoride and chalcogenide glasses are presented.
本文介绍了氟化物玻璃和硫系玻璃的化学组成、特征温度和透射光谱。
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7. A phase change memory formed by a plurality of phase change memory devices having a chalcogenide memory region (28) extending over an own heater (26).
8. The effect of lone-pair electrons on bonding in defect states is also discussed and it is shown that they play a significant role in chalcogenide glasses.
探讨了孤对电子对于缺陷态化学键的影响,证实了孤对电子在硫属玻璃中的重要作用。
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9. Professor Elena Semouchkina has developed a nonmetallic cloak that uses identical glass resonators made of chalcogenide glass, a type of material that does not conduct electricity.
10. The development and application of chalcogenide glasses as an IR transmitting material with high performance have long been impeded by insufficient degree of purity present in glasses.
高性能透红外硫系玻璃材料的开发和应用在很大程度上受到杂质对透过性能影响的制约。
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11. Under light irradiation, especially, Amorphous chalcogenide semiconductor have many photo-induced effects which are applied widely in many major, including optical waveguide, optoelectr.
硫系非晶态半导体材料在近远红外域有很好的透光性,具有较低的本征损耗,以及有制备光波导的优点等。
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12. Under light irradiation, especially, Amorphous chalcogenide semiconductor have many photo-induced effects which are applied widely in many major, including optical waveguide, optoelectr.