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快速有效地获得多级联光纤光栅法布里-珀罗(F-P)腔的光谱特性,是优化设计基于上述结构建立的级联多波长激光器、放大器等各种光器件以及复杂分布式传感网络的重要基础和保障.将V-I传输矩阵法用于光纤光栅F-P腔反射光谱特性的分析,并建立了V-I传输矩阵模型.采用该模型对三种不同结构的光纤光栅F-P腔在不同参数下的光谱特性进行分析,并与传统多层膜法的分析结果相比较,表明V-I传输矩阵法能够在保证分析精度的前提下大大节省运算时间.实验结果表明,V-I传输矩阵法对光纤光栅F-P腔谱特性的分析结果比耦合模法更准确.
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关键词:
- V-I传输矩阵法 /
- 光纤光栅法布里-珀罗腔特性 /
- 分析精度 /
- 运算时间
Fast and efficient access to spectral characteristics of multi-cascaded fiber grating Fabry-Perot (F-P) cavity, is an important foundation and premise to ensure optimizing the design of cascade multi-wavelength lasers, amplifiers and other optical devices, and complex distributed sensing network based on the F-P structure. V-I transmission matrix method is presented first in this paper to analyze the reflection spectral characteristics of fiber grating F-P cavity and then the V-I transmission matrix model is established. Spectral characteristics of three different structures of fiber grating F-P cavity at different parameters are analyzed based on the V-I transmission matrix model. Compared with multi-layer method, V-I transmission matrix method can save the computation time apparently under the premise of ensuring analysis accuracy. The experimental results show that for analyzing the spectral characteristics of fiber grating F-P cavity, the V-I transmission matrix method is more accurate than the coupled-mode method.-
Keywords:
- V-I transmission matrix method /
- fiber grating Fabry-Perot cavity characteristics /
- analysis accuracy /
- computation time
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[12] Wang Y H, Ren W H, Liu Y, Tan Z W, Jian S S 2008 Acta Phys. Sin. 57 6393 (in Chinese) [王燕花、任文华、刘 艳、谭中伟、简水生 2008 57 6393]
[13] Lü C G, Cui Y P, Wang Z Y, Yun B F 2004 Acta Phys. Sin. 53 145 (in Chinese) [吕昌贵、崔一平、王著元、恽斌峰 2004 53 145]
[14] Xu O, Lu S H, Jian S S 2008 Acta Phys. Sin. 57 6404 (in Chinese) [许 鸥、鲁韶华、简水生 2008 57 6404]
[15] Ye C J, Yang Z Q 2007 Laser J. 28 64 (in Chinese) [叶昌金、杨梓强 2007 激光杂志 28 64]
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[1] Othonos A, Lee X, Tsai D P 1996 Opt. Eng. 35 1088
[2] Liu Y Q, Chiang K S, Chu P L 2005 Opt. Eng. 44 11
[3] Daleiden J, Chitica N, Strassner M 1999 11th Inernational Conference on Indium Phosphide and Related Materials (Davos: IEEE) p285
[4] Rao Y J, Cooper M R, Jackson D A 2000 Electron. Lett. 36 708
[5] Qiu K, Wen F, Wu B J 2009 Acta Phys. Sin. 58 1726 (in Chinese) [邱 昆、文 峰、武保剑 2009 58 1726]
[6] Wei H, Wang M G, Jian S S 2003 Acta Phys. Sin. 52 609 (in Chinese) [魏 淮、王目光、简水生 2003 52 609]
[7] Liu S J, Shen J, Shen Z C, Kong W J, Wei C Y, Jin Y X, Shao J D, Fan Z X 2006 Acta Phys. Sin. 55 4588 (in Chinese) [刘世杰、沈 健、沈自才、孔伟金、魏朝阳、晋云霞、邵建达、范正修 2006 55 4588]
[8] Capmany J, Muriel M A, Sales S, Rubio J J, Pastor D 2003 J. Lightwave Technol. 21 3125
[9] Guan B O, Yu Y L, Ge C F, Dong X Y 2000 Acta Opt. Sin. 20 34 (in Chinese) [关柏鸥、余有龙、葛春风、董孝义 2000 光学学报 20 34]
[10] Zhang Z M, Shen Y H, Chen H F 2000 Optics (Beijing: Higher Education Press) p129 (in Chinese) [章志鸣、沈元华、陈惠芬 2000 光学 (北京:高等教育出版社) 第129页]
[11] Erdogan T 1997 J. Lightwave Technol. 15 1277
[12] Wang Y H, Ren W H, Liu Y, Tan Z W, Jian S S 2008 Acta Phys. Sin. 57 6393 (in Chinese) [王燕花、任文华、刘 艳、谭中伟、简水生 2008 57 6393]
[13] Lü C G, Cui Y P, Wang Z Y, Yun B F 2004 Acta Phys. Sin. 53 145 (in Chinese) [吕昌贵、崔一平、王著元、恽斌峰 2004 53 145]
[14] Xu O, Lu S H, Jian S S 2008 Acta Phys. Sin. 57 6404 (in Chinese) [许 鸥、鲁韶华、简水生 2008 57 6404]
[15] Ye C J, Yang Z Q 2007 Laser J. 28 64 (in Chinese) [叶昌金、杨梓强 2007 激光杂志 28 64]
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