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Carbon-implanted monomode waveguides in magneto-optical glasses for waveguide isolators
- 作者:Chun-Xiao Liu ; Li-Li Fu ; Liao-Lin Zhang ; Hai-Tao Guo ; Wei-Nan Li…
- 刊名:Applied Physics A: Materials Science & Processing
- 出版年:2016
- 出版时间:February 2016
- 年:2016
- 卷:122
- 期:2
- 全文大小:823 KB
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- 作者单位:Chun-Xiao Liu (1)
Li-Li Fu (2) Liao-Lin Zhang (1) Hai-Tao Guo (3) Wei-Nan Li (3) She-Bao Lin (4) Wei Wei (1)
1. School of Optoelectronic Engineering, Nanjing University of Posts and Telecommunications, Nanjing, 210023, China 2. College of Electronic Science and Engineering, Nanjing University of Posts and Telecommunications, Nanjing, 210023, China 3. State Key Laboratory of Transient Optics and Photonics, Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences (CAS), Xi’an, 710119, China 4. Institute of Physics and Optoelectronics Technology, Baoji University of Arts and Sciences, Baoji, 721007, China
- 刊物类别:Physics and Astronomy
- 刊物主题:Physics
Condensed Matter Optical and Electronic Materials Nanotechnology Characterization and Evaluation Materials Surfaces and Interfaces and Thin Films Operating Procedures and Materials Treatment
- 出版者:Springer Berlin / Heidelberg
- ISSN:1432-0630
文摘
Tb3+-doped aluminum borosilicate glasses are important magneto-optical materials for optical isolators. Optical waveguides are basic components in integrated photonics. By using the ion implantation technique, optical guiding structures can be produced in Tb3+-doped aluminum borosilicate glasses, and miniaturized waveguide isolators can be realized. In this paper, planar waveguides have been fabricated in Tb3+-doped aluminum borosilicate glasses by (6.0 + 5.5) MeV carbon ion implantation at doses of (8.0 + 4.0) × 1013 ions/cm2. The optical properties of optical waveguides are measured by equipments of prism coupling and end-face coupling systems. They are also analyzed by simulation programs of intensity calculation method and beam propagation method. The waveguides with good optical performances suggest potential applications on fabrication of waveguide isolators in Tb3+-doped aluminum borosilicate glasses.
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