光学学报, 2019, 39 (1): 0126018, 网络出版: 2019-05-10   

多模光纤散斑场的纵向偏振调控 下载: 1055次

Polarization Modulation Along Longitudinal Direction of Speckle Field Formed by Laser Beam Through Multimode Fiber
作者单位
华侨大学信息科学与工程学院, 福建省光传输与变换重点实验室, 福建 厦门 361021
引用该论文

扎西巴毛, 范伟如, 胡显声, 陈子阳, 蒲继雄. 多模光纤散斑场的纵向偏振调控[J]. 光学学报, 2019, 39(1): 0126018.

Bamao Zhaxi, Weiru Fan, Xiansheng Hu, Ziyang Chen, Jixiong Pu. Polarization Modulation Along Longitudinal Direction of Speckle Field Formed by Laser Beam Through Multimode Fiber[J]. Acta Optica Sinica, 2019, 39(1): 0126018.

参考文献

[1] 顾德门. 光学中的散斑现象——理论与应用[M]. 曹其智, 陈璧,译. 北京: 科学出版社, 2009: 1- 37.

    Goodman JW. Speckle phenomena in optics: theory and application[M]. Cao Q Z, Chen B, Transl. Beijing: Science Press, 2009: 1- 37.

[2] Ishimaru A. Limitation on image resolution imposed by a random medium[J]. Applied Optics, 1978, 17(3): 348-352.

[3] Bouma BE, Tearney GJ. Handbook of optical coherence tomography[M]. New York: Marcel Dekker Inc, 2002.

[4] Vellekoop I M, Mosk A P. Focusing coherent light through opaque strongly scattering media[J]. Optics Letters, 2007, 32(16): 2309-2311.

[5] Vellekoop I M, Lagendijk A, Mosk A P. Exploiting disorder for perfect focusing[J]. Nature Photonics, 2010, 4(5): 320-322.

[6] Vellekoop I M. Feedback-based wavefront shaping[J]. Optics Express, 2015, 23(9): 12189-12206.

[7] Park C, Park J H, Rodriguez C, et al. Full-field subwavelength imaging using a scattering superlens[J]. Physical Review Letters, 2014, 113(11): 113901.

[8] 何西, 刘诚, 朱健强. 基于振幅分束调制的相位恢复成像技术[J]. 光学学报, 2018, 38(9): 0911002.

    He X, Liu C, Zhu J Q. Beam splitting amplitude modulation phase retrieval imaging[J]. Acta Optica Sinica, 2018, 38(9): 0911002.

[9] 赵明, 赵美晶, 孙程伟, 等. 基于纯相位调制的散射介质传输矩阵测量与光波聚焦[J]. 光学学报, 2018, 38(1): 0129001.

    Zhao M, Zhao M J, Sun C W, et al. Measurement and light focusing by transmission matrices of scattering media based on phase-only modulation[J]. Acta Optica Sinica, 2018, 38(1): 0129001.

[10] Wan L P, Chen Z Y, Huang H L, et al. Focusing light into desired patterns through turbid media by feedback-based wavefront shaping[J]. Applied Physics B, 2016, 122(7): 204.

[11] Cizmar T, Mazilu M, Dholakia K. In situ wavefront correction and its application to micromanipulation[J]. Nature Photonics, 2010, 4(6): 388-394.

[12] Fiolka R, Si K, Cui M. Complex wavefront corrections for deep tissue focusing using low coherence backscattered light[J]. Optics Express, 2012, 20(15): 16532-16543.

[13] Mariampillai A, Standish B A, Moriyama E H, et al. Speckle variance detection of microvasculature using swept-source optical coherence tomography[J]. Optics Letters, 2008, 33(13): 1530-1532.

[14] Flusberg B A, Cocker E D, Piyawattanametha W, et al. Fiber-optic fluorescence imaging[J]. Nature Methods, 2005, 2(12): 941-950.

[15] Choi Y, Yoon C, Kim M, et al. Scanner-free and wide-field endoscopic imaging by using a single multimode optical fiber[J]. Physical Review Letters, 2012, 109(20): 203901.

[16] Richardson D J, Fini J M, Nelson L E. Space-division multiplexing in optical fibres[J]. Nature Photonics, 2013, 7(5): 354-362.

[17] Florentin R, Kermene V, Benoist J, et al. Shaping the light amplified in a multimode fiber[J]. Light: Science & Applications, 2017, 6(2): e16208.

[18] Gover A, Lee C P, Yariv A. Direct transmission of pictorial information in multimode optical fibers[J]. Journal of the Optical Society of America, 1976, 66(4): 306-311.

[19] di Leonardo R, Bianchi S. Hologram transmission through multi-mode optical fibers[J]. Optics Express, 2011, 19(1): 247-254.

[20] Cizmar T, Dholakia K. Exploiting multimode waveguides for pure fibre-based imaging[J]. Nature Communications, 2012, 3(8): 1027.

[21] Papadopoulos I N, Farahi S, Moser C, et al. Focusing and scanning light through a multimode optical fiber using digital phase conjugation[J]. Optics Express, 2012, 20(10): 10583-10590.

[22] 尹哲, 刘国栋, 刘炳国, 等. 基于空间光调制器的多模光纤出射光斑聚焦目标函数研究[J]. 中国激光, 2015, 42(7): 0705003.

    Yin Z, Liu G D, Liu B G, et al. Research on the objective function of spatial light modulator-based output spot focusing for multimode fiber[J]. Chinese Journal of Lasers, 2015, 42(7): 0705003.

[23] 赵广智, 耿燚, 陈慧, 等. 一种基于DMD二值振幅调制的多模光纤出射光斑聚焦扫描技术[J]. 光学学报, 2018, 38(9): 0911004.

    Zhao G Z, Geng Y, Chen H, et al. A method for focusing and scanning light through multimode fiber based on binary amplitude modulation DMD technique[J]. Acta Optica Sinica, 2018, 38(9): 0911004.

[24] Guan Y, Katz O, Small E, et al. Polarization control of multiply scattered light through random media by wavefront shaping[J]. Optics Letters, 2012, 37(22): 4663-4665.

[25] Soni N K, Vinu R V, Singh R K. Polarization modulation for imaging behind the scattering medium[J]. Optics Letters, 2016, 41(5): 906-909.

[26] 刘圣, 李鹏, 章毅, 等. 自由空间中偏振调制光场的传输及控制[J]. 光学学报, 2016, 36(10): 1026001.

    Liu S, Li P, Zhang Y, et al. Transmission and control of polarization modulated light field in free space[J]. Acta Optica Sinica, 2016, 36(10): 1026001.

[27] Fan W R, Hu X S, Zhaxi B M, et al. Generation of focal pattern with controllable polarization and intensity for laser beam passing through a multi-mode fiber[J]. Optics Express, 2018, 26(6): 7693-7700.

[28] Redding B, Popoff S M, Cao H. All-fiber spectrometer based on speckle pattern reconstruction[J]. Optics Express, 2013, 21(5): 6584-6600.

[29] BornM, WolfE. Principles of optics[M]. 7th ed. Cambridge: Cambridge University Press, 1999.

扎西巴毛, 范伟如, 胡显声, 陈子阳, 蒲继雄. 多模光纤散斑场的纵向偏振调控[J]. 光学学报, 2019, 39(1): 0126018. Bamao Zhaxi, Weiru Fan, Xiansheng Hu, Ziyang Chen, Jixiong Pu. Polarization Modulation Along Longitudinal Direction of Speckle Field Formed by Laser Beam Through Multimode Fiber[J]. Acta Optica Sinica, 2019, 39(1): 0126018.

本文已被 1 篇论文引用
被引统计数据来源于中国光学期刊网
引用该论文: TXT   |   EndNote

相关论文

加载中...

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!