光子学报, 2014, 43 (7): 0730002, 网络出版: 2014-08-18   

808nm LD激发下高折射率差光纤锥硫卤微球耦合系统的荧光回廊模

Excitation of Fluorescence Whispering Gallery Modes in a TaperChalcohalide Microsphere Coupling System with a Large Refractive Index Difference Pumped by an 808 nm Laser Diode
作者单位
宁波大学 高等技术研究院 红外材料及器件实验室,浙江 宁波 315211
摘要
用熔融淬冷法制备了0.5 wt.% 掺杂Nd3+:75GeS215Ga2S30CsI(0.5wt.% Nd GGSI)硫卤玻璃.在此基础上以玻璃粉料漂浮熔融法制备出粒径为50~300 μm高折射率(n≈2.1)玻璃微球,并在显微镜下选出表面质量高的硫卤微球用于后续实验.将火焰法拉制出的直径1~2 μm间的双锥形石英微纳光纤与硫系微球进行近场耦合.相位匹配条件下测试结果表明光纤锥倏逝场将激发球内径向高阶回音壁模式.实验测量了在808 nm LD激光泵浦下直径110 μm微球的荧光光谱特性,结果表明:掺Nd3+硫卤微球在输出端1 075 nm波段附近产生了等间距分布的荧光回音壁模式的光学谐振,共振峰间隔为1.80 nm.实验结果与微球腔回音壁模式谐振的理论模型有较高的符合度.
Abstract
Chalcohalide glass based on the composition of GeGaSCsI (GGSI) doped with Nd3+ (0.5 wt.%) was synthesized with the traditional meltquenching technique.The synthesized glass material was used to fabricate large refractive index (n≈2.1) microspheres using an improved flowing powders method.The fabricated spheres have diameters ranging from 50 to 300 μm.Microspheres with good surface quality were selected for the following coupling experiment.Biconical tapered fibers with waist diameters of 1~2 μm were fabricated with a flameheating process.They were then coupled with the selected GGSI glass microsphere via phasematched evanescent waves.The phasematching condition between the sphere and the fiber predicted high order radial modes in microsphere would be excited by the evanescent field of the fiber taper.In experiment,an 808 nm Laser Diode (LD) was used as the excitation source and fluorescence emission spectra of the selected microsphere were measured.Periodically spaced intensity peaks around 1 075 nm,which indicated Whispering Gallery Mode (WGM) optical resonances occurred in the Nd3+ doped GGSI glass microsphere,were clearly observed in experimental results.The typical spacing between two resonance peaks is 1.80 nm,which is in good accordance with the theoretical prediction.
参考文献

[1] 黄娆,刘之景,王克逸,等.微球激光的最新研究进展[J].强激光与粒子束,2004,16(8):957-961.

    HUANG Rao,LIU Zhijing,WANG Keyi,et al.Recent research development of microsphere laser[J].High Power Laser and Particle Beams,2004,16(8):957-961.

[2] MATSKO A B,ILCHENKO V S.Optical resonators with whisperinggallery modespart I:basics[J].IEEE Journal of Selected Topics in Quantum Electronics,2006,12(1):3-14.

[3] VAHALA K J.Optical microcavities[J].Nature,2003,424(740):839-846.

[4] SPILLANE S M,KIPPENBERG T J,VAHALA K.J.Ultralowthreshold Raman laser using a spherical dielectric microcavity[J].Nature,2002,415(36):621-623.

[5] RIGHINI G.C,DUMEIGE Y,FRON P.et al.Whispering gallery mode microresonators:fundamentals and applications[J].Rivista del Nuovo Cimento,2011,34(925):435-488.

[6] JAIN R K,HOSSEINZADEH M.Microresonatorbased midIR devices[J].Optical Components and Materials X,2013,8621(981):86210R.

[7] 张鹏君,戴世勋,彭波,等.Dy3+掺杂GeGaSeKBr硫卤玻璃近红外及中红外发光特性研究[J].中国激光,2010,28(2):147-153.

    LI Zhongxiu,XU Tiefeng,SHEN Xiang,et al.Near and mid infrared emission properties of Dy3+Doped GeGaSeKBr chalcohalide glasses[J].Chinese Journal of Lasers,2010,28(2):147-153.

[8] ZAKERY A,ELLIOTT S R Optical properties and applications of chalcogenide glasses:a review[J].Journal of NonCrystalline Solids,2003,330(972):1-12.

[9] ELLIOTT G R,HEWAK D W,Murugan G S,et al.Chalcogenide glass microspheres; their production,characterization and potential[J].Optics Express,2007,15(629):17542-17553.

[10] ELLIOTT G R,MURUGAN G S,WILKINSON J S,et al.Chalcogenide glass microsphere laser[J].Optics Express,2010,18(642):26720-26727.

[11] BROADDUS D H,FOSTER M A,AGHA I H,et al.Siliconwaveguidecoupled highQ chalcogenide microspheres[J].Optics Express,2009,17(646):5998-6003.

[12] WANG P,DING M,LEE T,et al.Packaged chalcogenide microsphere resonator with high Qfactor[J].Applied Physics Letters,2013,102(978):131110-131115.

[13] KNIGHT J C,CHEUNG G,JACQUES F,et al.Phasematched excitation of whisperinggallerymode resonances by a fiber taper[J].Optics Letters,1997,22(15):1129-1131.

[14] 王丽,严英占,张宇光,等.振动噪声对高Q光学微腔耦合系统的影响及抑制方法[J].发光学报,2011,32(9):950-955.

    WANG Li,YAN Yingzhan,ZhANG Yuguang,et al.Effect of vibration noise on the highQ optical microcavity coupling system and its suppression methods[J].Chinese Journal of Luminescence,2011,32(9):950-955.

[15] 郭长磊,黄玉,张培进,等.976nm光抽运掺Er3+二氧化硅微球产生激光的研究[J].中国激光,2013,40(3):0302004.

    GUO Changlei,HUANG Yu,ZHANG Peijin,et al.Study of laser emission from Er3+doped silica microsphere pumped by 976 nm light[J].Chinese Journal of Lasers,2013,40(3):0302004.

[16] LAM C C,LEUNG P T,YOUNG K.Explicit asymptotic formulas for the positions,widths,and strengths of resonances in Mie scattering[J].Journal Optical Society of America B,1992,9(907):1585-1592.

[17] 吕昊,刘爱梅,吴芸,等.磷酸盐玻璃微球的制备[J].光学技术,2009,35(5):712-714.

    LV Hao,LIU Aimei,WU Yun,et al.Fabrication of phosphate glass microspheres[J].Optical Technique,2009,35(5):712-714.

[18] WARD J M,WU Y,KHALFI K,et al.Short vertical tube furnace for the fabrication of doped glass microsphere lasers[J].Review of Scientific Instruments,2010,81(52):073106.

[19] MARTINELLI J R,SENE F F,KAMIKAWACHI C N,et al.Synthesis and characterization of glassceramic microspheres for thermotherapy[J].Journal of NonCrystalline Solids,2010,356(50):2683-2688.

[20] 严英占,吉喆,王宝花等.锥形光纤倏逝场激发微球腔高Q模式[J].中国激光,2010,37(7):1789-1793.

    YAN Yingzhan,Ji Zhe,Wang Baohua,et al.Evanescent wave excitation of microsphere highQ model using tapered fiber[J].Chinese Journal of Lasers,2010,37(7):1789-1793.

[21] 金虎,陆云,白晓淞,等.基于回音壁模式的球形光学微腔实验研究[J].激光与光电子学进展,2012,49(6):062301.

    JIN Hu,LU Yun,BAI Xiaosong,et al.Experimental sudy of whispering gallery modebased spherical optical microcavity[J].Laser & Optoelectronics Progress,2012,49(6):062301.

[22] BARBER P W,CHANG R K.Optical effects associated with small particles[M].Singapore:World Scientific,1988.

[23] MIURA K,TANAKA K,HIRAO K.CW laser oscillation on both the4F3/2–4I11/2 and 4F3/2–4I13/2 transitions of Nd3+ ions using a fluoride glass microsphere[J].Journal of NonCrystalline Solids,1997,213–214(17):276-280.

[24] 张宇光,李鹏,王丽,等.外界环境对微球腔品质因数的影响[J].光子学报,2011,40(5):803-806.

    ZHANG YuGuang,LI Peng,WANG Li,et al.Effect of the Environment on Microsphere Qfactor[J].Acta Photonica Sinica,2011,40(5):803-806.

[25] 吕宝龙,王育竹,黎永青.钕玻璃微球腔模式移动的观察[J].光学学报,1994,14(4):442-444.

    LU BaoLong,WANG YuZhu,LI YongQing.Observation of Mode Shift of NdGlass Microspheical Cavity[J].Acta Optica Sinica,1994,14(4):442-444.

路来伟, 吴越豪, 李超然, 吕社钦, 张培晴, 戴世勋, 许银生, 沈祥. 808nm LD激发下高折射率差光纤锥硫卤微球耦合系统的荧光回廊模[J]. 光子学报, 2014, 43(7): 0730002. LU Laiwei, WU Yuehao, LI Chaoran, LV Sheqin, ZHANG Peiqing, DAI Shixun, XU Yinsheng, SHEN Xiang. Excitation of Fluorescence Whispering Gallery Modes in a TaperChalcohalide Microsphere Coupling System with a Large Refractive Index Difference Pumped by an 808 nm Laser Diode[J]. ACTA PHOTONICA SINICA, 2014, 43(7): 0730002.

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