塑料光纤的研究与应用进展
Progress in Research and Applications of Plastic Optical Fiber
查看参考文献79篇
文摘
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塑料制成的光纤具有轻质、柔软、低成本等特点,可用于通信、图像传输、照明与装饰等领域,实现与其它光纤优势互补的各种功能.在通信领域,渐变折射率塑料光纤实现了10Gbps@100 m的消费级传输速率和40Gbps的测试级传输速率;在图像传输领域,已有0.45 mm直径@7400像素和1.5 mm直径@13 000像素的传像束,以及分辨率高达256 lp/mm的光纤面板产品;在塑料光纤激光器领域,有关增益介质、光纤长度、光纤结构等与激光器/放大器的特征性能间关系的理论与实验研究逐步深入;在装饰和照明领域,已有用塑料光纤开发的太阳光光纤照明、造型光纤照明、光纤毯治疗仪等装置.本文就塑料光纤在上述领域的最新研究和应用情况进行综述. |
其他语种文摘
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Plastic optical fibers have the characteristics of lightweight,softness,low cost and so on.It is noteworthy that plastic optical fibers and other types of fibers have complementary advantages in function,then various plastic optical fibers can be applied in communication,image transmission, illumination,and decorative respectively to realize different functions.In the field of communication, graded index plastic optical fibers have obtained the transmission rate of 10 Gbps@100 min the consumption level,and 40Gbps in the test level.In the field of image transmission,there are image bundles with 0.45 mm diameter@7 400 pixels and 1.5 mm diameter@13 000 pixels,as well as optical fiber plate products with resolutions up to 256 lp/mm.In the field of plastic optical fiber lasers,the theoretical and experimental research on the relationship between the parameters(gain medium,fiber length,fiber structure)and the characteristics of laser/amplifier is gradually deepening.In the field of decoration and illumination,lots of devices have been developed such as solar optical plastic optical fiber illumination,modeling plastic optical fiber illumination and plastic optical fiber blanket therapeutic instrument.In this paper,the latest researches and applications of plastic optical fiber mentioned above are reviewed. |
来源
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光子学报
,2019,48(11):1148006 【核心库】
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DOI
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10.3788/gzxb20194811.1148006
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关键词
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塑料光纤
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太赫兹波
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光纤通信
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光纤传像
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光纤激光器/放大器
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光纤照明
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地址
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1.
中国科学院西安光学精密机械研究所, 瞬态光学与光子技术国家重点实验室, 西安, 710119
2.
吉林大学电子科学与工程学院, 集成光电子学国家重点实验室, 长春, 130012
3.
中国科学院大学, 北京, 100039
4.
宝鸡文理学院物理与光电技术学院, 陕西, 宝鸡, 721016
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语种
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中文 |
文献类型
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综述型 |
ISSN
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1004-4213 |
学科
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物理学 |
基金
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国家自然科学基金
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文献收藏号
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CSCD:6626462
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