1. 甘肃联合大学师范学院,甘肃,兰州,730000
2. 2中山大学光电材料与技术国家重点实验室,广东,广州,510275
3. 3兰州大学物理科学与技术学院,甘肃,兰州,730000
纸质出版日期:2013,
网络出版日期:2013-5-25,
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金虎, 白晓淞, 王鹏, 等. 利用蚕丝制作的微米光器件的研究[J]. 中山大学学报(自然科学版)(中英文), 2013,52(3):6-10.
JIN Hu, BAI Xiaosong, WANG Peng, et al. Silk Fiber Based Microphotonic Devices[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2013,52(3):6-10.
利用Na
2
CO
3
水溶液将蚕茧去除丝胶得到直径为5~15 μm的生物纤维,采用扫描电镜(SEM)和透射电镜(TEM)观察了其形貌特征。通过倏逝波耦合的方法,利用SiO
2
微纳光锥将波长为671 nm的红光、532 nm的绿光、473 nm的蓝光分别耦合进入微米蚕丝生物光纤,分析了其导光特性,测量了光在蚕丝纤维中的传输损耗。制作了2×2、3×1、1×4、环形等光子结构。实验证明蚕丝微米生物光纤具有良好的柔韧性和表面光滑度,其中波长为532 nm的绿光在直径为9.0 μm的蚕丝纤维中传输时的损耗为0.78 dB·mm
-1
。
By removing the sericin from the silk fibers using Na
2
CO
3
solution
bio-fibers in diameters of 5~15 μm were fabricated and their morphology was observed using SEM and TEM. With the method of evanescent wave coupling
red/green/blue light at the wavelength of 671/532/473 nm was coupled into the micrometer-sized silk fiber-based optical fibers
followed by the investigation of the waveguiding properties and measurement of the optical propagating loss. Various photonic devices
including 2×2
3×1
1×4 and ring structures
were fabricated using the silk fibers. Experimental results confirm that the silk fiber-based bio-optical fibers exhibit good flexibility and surface smoothness. A propagating loss of 0.78 dB·mm
-1
was obtained for the green light at 532 nm guided in the silk fiber with diameter of 9.0 μm.
光学器件微米生物光纤倏逝波耦合蚕丝纤维
optical devicemicro/nano bio-optical fiberevanescent wave couplingsilk fiber
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