材料科学
微结构光纤
法拉第效应
光隔离器
光子晶体光纤
光纤
光电子学
波导管
硫系玻璃
硫系化合物
光学
纤维
塑料光纤
光纤传感器
磁场
复合材料
物理
量子力学
波长
作者
Markus A. Schmidt,Lothar Wondraczek,Ho Wai Howard Lee,N. Granzow,Ning Da,P. St. J. Russell
标识
DOI:10.1002/adma.201100364
摘要
Abstract Magneto‐optical glasses are of considerable current interest, primarily for applications in fiber circuitry, optical isolation, all‐optical diodes, optical switching and modulation. While the benchmark materials are still crystalline, glasses offer a variety of unique advantages, such as very high rare‐earth and heavy‐metal solubility and, in principle, the possibility of being produced in fiber form. In comparison to conventional fiber‐drawing processes, pressure‐assisted melt‐filling of microcapillaries or photonic crystal fibers with magneto‐optical glasses offers an alternative route to creating complex waveguide architectures from unusual combinations of glasses. For instance, strongly diamagnetic tellurite or chalcogenide glasses with high refractive index can be combined with silica in an all‐solid, microstructured waveguide. This promises the implementation of as‐yet‐unsuitable but strongly active glass candidates as fiber waveguides, for example in photonic crystal fibers.
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