Changchun Institute of Optics,Fine Mechanics and Physics,CAS
Anisotropic waveguide theory for electrically tunable distributed feedback laser from dye-doped holographic polymer dispersed liquid crystal | |
Diao Z. H.; Huang W. B.; Peng Z. H.; Mu Q. Q.; Liu Y. G.; Ma J.; Xuan L.![]() | |
2014 | |
发表期刊 | Liquid Crystals
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ISSN | ISBN/0267-8292 |
卷号 | 41期号:2页码:239-246 |
摘要 | Anisotropic waveguide theory is developed for electrically tunable distributed feedback (DFB) laser from dye-doped holographic polymer dispersed liquid crystal (HPDLC) grating. The period grating structure, optical anisotropy of the liquid crystal (LC) and practical light propagation path in the HPDLC have been considered. The emitted lasing wavelength is deduced on basis of the dielectric anisotropy of the LC, transverse-magnetic (TM) light wave propagation in the core layer and DFB laser theory. An experimental method to determine the tilt angle of the LC and the lasing behaviours under different electric fields are used to verify the validity of the anisotropic numerical analysis. The results show that a more accurate agreement between the theoretical calculations and the experimental data is achieved. The anisotropic numerical analysis presented here is very useful when designing and optimising tunable lasers for optical communications and integrated optics. |
收录类别 | SCI |
语种 | 英语 |
文献类型 | 期刊论文 |
条目标识符 | http://ir.ciomp.ac.cn/handle/181722/43745 |
专题 | 中科院长春光机所知识产出 |
推荐引用方式 GB/T 7714 | Diao Z. H.,Huang W. B.,Peng Z. H.,et al. Anisotropic waveguide theory for electrically tunable distributed feedback laser from dye-doped holographic polymer dispersed liquid crystal[J]. Liquid Crystals,2014,41(2):239-246. |
APA | Diao Z. H..,Huang W. B..,Peng Z. H..,Mu Q. Q..,Liu Y. G..,...&Xuan L..(2014).Anisotropic waveguide theory for electrically tunable distributed feedback laser from dye-doped holographic polymer dispersed liquid crystal.Liquid Crystals,41(2),239-246. |
MLA | Diao Z. H.,et al."Anisotropic waveguide theory for electrically tunable distributed feedback laser from dye-doped holographic polymer dispersed liquid crystal".Liquid Crystals 41.2(2014):239-246. |
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