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掺杂光子晶体光纤自发辐射与掺杂激活杂质的光增益透射谱研究
引用本文:李正华,沈廷根,郑浩,吴炳坚,方明阳. 掺杂光子晶体光纤自发辐射与掺杂激活杂质的光增益透射谱研究[J]. 量子光学学报, 2006, 12(2): 113-119
作者姓名:李正华  沈廷根  郑浩  吴炳坚  方明阳
作者单位:镇江船艇学院,江苏,镇江,212003;江苏大学通信工程系,江苏,镇江,212013;江苏大学,物理系,江苏,镇江,212013;江苏大学应用物理研究,所,江苏镇江,212013;江苏大学,物理系,江苏,镇江,212013;江苏大学通信工程系,江苏,镇江,212013;江苏大学应用物理研究,所,江苏镇江,212013;江苏大学通信工程系,江苏,镇江,212013
摘    要:借助光子晶体中二能级原子的自发辐射理论证明缺陷态的局域场存在的必然性以及局域场基本性质,为研究光子晶体光纤掺杂自发辐射的内在规律提供了理论依据。且将自发辐射理论与数值模拟相结合,在缺陷介质中掺激活杂质时,研究了光子晶体光纤的掺杂局域场特征以及受激辐射增强和透射率大于1现象与光子带隙群速度异常和掺杂层复有效折射率成负的虚部之间的内在关系。由此说明光子晶体光纤的缺陷介质中掺入激活杂质时,光子禁带中能出现品质因子非常高的杂质态,具有很大的态密度,较强的受激辐射放大。

关 键 词:光子晶体  光子晶体光纤  自发辐射  光子禁带  激活杂质  光增益
文章编号:1007-6654(2006)02-0113-07
收稿时间:2005-03-23
修稿时间:2005-03-23

Study on the Optical Gain of Photonic Crystals Fiber with Active Impurity
LI Zheng-hua,SHEN Tin-gen,ZHENG Hao,WU Bing-Jian,FANG Ming-yang. Study on the Optical Gain of Photonic Crystals Fiber with Active Impurity[J]. Acta Sinica Quantum Optica, 2006, 12(2): 113-119
Authors:LI Zheng-hua  SHEN Tin-gen  ZHENG Hao  WU Bing-Jian  FANG Ming-yang
Affiliation:1. Zhenjiang Watereraft College, Zhenjiang Jiangsu China, 212003, China; 2. Department of Physies, Jiangsu University, Zhenjiang 212013, China ; 3. Institute of Applied Physics Jiangsu University, Zhenjiang 212013, China; 4. Telecommunication Engineering Department of Jiangsu University, Zhenjiang 212013, China
Abstract:Basing on the theory of spontaneous emission from two-level atoms in photonic crystal fibers(PCFs),we demonstrated the inevitable existence of localized fields of defect modes as well as their basic properties.It provides theoretical proof for inevstingating into the inherent laws of spontaneous radiation from doped media.On the basis,the relation between the enhancement of stimulated emission as well as transmissivity being greater than one and the abnormal group velocity in photonic band gaps as well as negative imaginary part of the complex effective index of refraction of doped defect layer is studied by numerical simulation method.Therefore great amplification of stimulated emission is obtainablel.
Keywords:photonic crystals  photonic crystal fibers  spontaneous emission  photonic band gaps  active impurity  optical gain
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