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1. 上海理工大学 光电信息与计算机工程学院 上海市现代光学系统重点实验室 上海,200093
2. 上海工程技术大学 电子电气工程学院 上海,201620
收稿日期:2010-12-13,
修回日期:2011-02-17,
网络出版日期:2011-10-27,
纸质出版日期:2011-10-25
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刘瑾, 陈抱雪, 杨海马. 可激发等离子体表面波的离子交换单模条波导[J]. 光学精密工程, 2011,19(10): 2342-2348
LIU Jin, CHEN Bao-xue, YANG Hai-ma . Ion-exchange single-mode stripe waveguide for excitation of surface plasma wave[J]. Editorial Office of Optics and Precision Engineering, 2011,19(10): 2342-2348
刘瑾, 陈抱雪, 杨海马. 可激发等离子体表面波的离子交换单模条波导[J]. 光学精密工程, 2011,19(10): 2342-2348 DOI: 10.3788/OPE.20111910.2342.
LIU Jin, CHEN Bao-xue, YANG Hai-ma . Ion-exchange single-mode stripe waveguide for excitation of surface plasma wave[J]. Editorial Office of Optics and Precision Engineering, 2011,19(10): 2342-2348 DOI: 10.3788/OPE.20111910.2342.
设计并制备了离子交换单模条波导
用于激发等离子体表面波。研究了波导设计过程中相关参数的确定方法、条波导制备过程涉及的二维扩散问题
折射率分布以及等离子体表面波的激发等。基于Ag
+
-Na
+
离子交换技术在德国B270光学玻璃上制备出渐变型平面波导
采用余误差函数拟合其折射率分布
得到了一定工艺参数下的光波导扩散系数
D
eff
与折射率增量值
n
。 在此基础上
利用等效折射率法给出单模波导条件
设计相应的工艺参数
以光刻技术为核心在0.1%AgNO
3
~99.9%NaNO
3
混合熔融盐中实验制备了单模条波导
并进行模场分布测试。结果表明
制得的单模条波导具有良好的单模特性;在此波导上镀50 nm的金膜
采用40%~70%的甘油溶液进行测试
可激发等离子体表面波。
An ion-exchange single-mode stripe waveguide was designed to excite the surface plasma wave.The experimental determination method of relative parameters
the two-dimensional diffusion and refractive index distribution of the stripe waveguide and the excitation of surface plasma wave were investigated. Based on Ag
+
-Na
+
ion-exchange technology
the planar waveguide with a graded refractive index was prepared on Germany B270 optical glass. By taking a complementary error function to fit the refractive index distribution
the diffusion coefficient (
D
eff
) and the refractive index increment (
n
) of the waveguide were obtained under certain process parameters. On this basis
the condition of single-mode waveguide was calculated by using equivalent refractive index method and the corresponding technological parameters were designed. Finally
the single-mode strip waveguide was prepared in the 0.1% AgNO
3
~99.9%NaNO
3
mixed molten salt based on the lithographic technology. The test result of mode field distribution shows that the waveguide prepared has a good single-mode characteristic. When the waveguide is coated with 50 nm Au film
and tested by glycerine solution with different concentrations from 40% to 70%
it can excite surface plasma waves successfully.
王悠悠,陈抱雪,邹任玲等,离子交换单模条波导的折射率分布控制与制备[J].光学仪器,2010,32(2):70-74WANG Youyou, CHEN Baoxue, ZOURenling, etal. Control and preparation of ion。exchange single-mode strip waveguide efractive index distribution[J]. OPTICAI。INSTRUMENTS ,2010,32(2):70-74[2] 张峰,钟金钢.表面等离子体共振传感器自适应测量光路[J].光电子?激光,2006,17(2):211-214ZHANG Feng, ZHONG Jin-gang. Adaptive optical design in surface plasmon resonance sensor [J].Journal of Optoelectronics ?Laser, 2006, 17(2):211-214.[3] Slavik R, Homola J, Cryrok J,etal. Novel spectral fiber sensor based on surface plasmon resonance[J]. Sensors and actuators B, 2001, 80(2): 106-111.[4]Homola J, Yee S S, GaugLitz. Surface plasmon resonance sensors review[J]. Sensors and Actuators B, 1999, 54:3-15 ISSN: 0925-4005[5] 李大勇,曹振新,吴乐南,等.光纤表面等离子体共振传感检测系统中的数据分析[J].电子与信息学报,2006,28(10):1946-1949.LI Da-yong, CAO Zhen-xin, WU Le-nan,etal. Data analysis in the optical fiber surface plasmon resonance sensing systems[J].Electronic and Information Journal, 2006, 28(10):1946-1949.[6]Dostalek J, Ctyroky J, Homola J, etal. Surface plasmon resonance biosensor based on integrated optical waveguide[J].Sensors and Actuators B, 2001,76:8-12. ISSN: 0925-4005[7]Nelson S G,Johnston K S,Yee S S.Hihg Sensitivity surface plasmon resonance sensor based on phase detection[J].Sen-sors and Actuators B,1996,35-36:187-191.[8]曹庄琪. 导波光学[M]. 北京: 科学出版社, 2007.Cao Zhuang-qi.Guided wave optics[M], Beijing: Science Press,2007[9] Notcovich A G, Zhuk V, Lipson S G. Surface plasmon resonance imaging[J]. Appl. Phys. Lett., 2000, 39:1665-1667.[10]张晓微,陈抱雪,隋国荣,等. 用于波导阵列——光纤阵列自动对接的多目标演化算法的研究[J].光子学报,2008,37(3):460-465 ZHANG Xiao-wei, CHEN Bao-xue, SUI Guo-ron, etal. Study of Multi-Objective Evolutionary Algorithm Applied to WaveguideArray-Fiber Array Automatic Alignment System[J]. Acta Photonic Sinica, 2008,37(3) :460-465
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