半导体光电, 2018, 39 (4): 469, 网络出版: 2018-08-29   

铌酸锂晶体波导散斑温度传感器的研究

Study on Speckle Temperature Sensor With Lithium Niobate Crystal Waveguide
作者单位
南开大学 电子信息与光学工程学院 现代光学研究所, 天津 300350
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朱松河, 武鹏飞, 刘洪亮. 铌酸锂晶体波导散斑温度传感器的研究[J]. 半导体光电, 2018, 39(4): 469.

ZHU Songhe, WU Pengfei, LIU Hongliang. Study on Speckle Temperature Sensor With Lithium Niobate Crystal Waveguide[J]. Semiconductor Optoelectronics, 2018, 39(4): 469.

参考文献

[1] Davis K M, Miura K, Sugimoto N, et al. Writing waveguides in glass with a femtosecond laser[J]. Opt. Lett., 1996, 21(21): 1729-1731.

[2] Salamu G, Pavel N. Power scaling from buried depressed-cladding waveguides realized in Nd∶YVO4 by femtosecond-laser beam writing[J]. Opt. Laser Technol., 2016, 84: 149-154.

[3] Cheng Chen, Romero C, Aldana J R V D, et al. Superficial waveguide splitters fabricated by femtosecond laser writing of LiTaO3 crystal[J]. Opt. Eng., 2015, 54(6): 067113.

[4] Chen Feng, Lv Jinman, Yuan Weihao, et al. Three-dimensional femtosecond laser fabrication of waveguide beam splitters in LiNbO3 crystal[J]. Opt. Mater. Express, 2015, 5(6): 1274.

[5] Calmano T, Siebenmorgen J, Hellmig O, et al. Nd∶YAG waveguide laser with 1.3W output power fabricated by direct femtosecond laser writing[J]. Appl. Phys. B, 2010, 100(1): 131-135.

[6] Chen Weijin, Eaton S M, Zhang Haibin, et al. Broadband directional couplers fabricated in bulk glass with high repetition rate femtosecond laser pulses[J]. Opt. Express, 2008, 16(15): 11470-11480.

[7] Golan L, Shoham S. Speckle elimination using shift-averaging in high-rate holographic projection[J]. Opt. Express, 2009, 17: 1330-1339.

[8] Almoro P F, Pedrini G, Anand A, et al. Angular displacement and deformation analyses using a speckle-based wavefront sensor[J]. Appl. Opt., 2009, 48: 932-940.

[9] Ramirezsanjuan J C, Regan C, Coyotlocelotl B, et al. Spatial versus temporal laser speckle contrast analyses in the presence of static optical scatterers[J]. J. Biomed. Opt., 2014, 19: 106009.

[10] Pan K, Uang C M, Cheng Feng, et al. Multimode fiber sensing by using mean-absolute speckle-intensity variation[J]. Appl. Opt., 1994, 33: 2095-2098.

[11] Yu F, Wen Meiyuan, Yin Shizhuo, et al. Submicrometer displacement sensing using inner-product multimode fiber speckle fields[J]. Appl. Opt., 1993, 32: 4685-4689.

[12] Rodriguez-Cobo L, Lomer M, Cobo A, et al. Optical fiber strain sensor with extended dynamic range based on specklegrams[J]. Sens. Actuators A-Phys., 2013, 203: 341-345.

[13] Rodriguez-Cobo L, Lomer M, Lopez-Higuera J M. Fiber specklegram sensors sensitivities at high temperatures[J]. Proc. of SPIE, 2015, 9634: 96347J.

朱松河, 武鹏飞, 刘洪亮. 铌酸锂晶体波导散斑温度传感器的研究[J]. 半导体光电, 2018, 39(4): 469. ZHU Songhe, WU Pengfei, LIU Hongliang. Study on Speckle Temperature Sensor With Lithium Niobate Crystal Waveguide[J]. Semiconductor Optoelectronics, 2018, 39(4): 469.

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