Integrated optics and discrete optics in optical fibers
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摘要: 光纤集成光学和离散光学有望成为光子学集成的一个新分支。这种集成技术可以通过离散的方法方便地在一根光纤中控制和操纵光波,也为集成光学与离散光学的研究提供了一个灵活方便的平台,为微光子器件和系统集成提供了一种有效的方法和手段。文章简要总结了在光纤内实现光学器件集成和微光学系统集成的主要思想和关键技术,探讨了离散光学需要考虑的核心内容,为该方向的进一步发展提供了若干前期的研究基础。Abstract: Fiber integrated optics and discrete optics are expected to become a new branch of photonics integration. This technology can easily control and manipulate light waves in an optical fiber by a discrete method, and thus provides a flexible and convenient platform for research on integrated optics and discrete optics, and for the fabrication of micro-photonics devices and systems. This paper briefly summarizes the main ideas and key technologies of optical device integration and micro-optical system integration in optical fiber, discusses some vital issues of discrete optics, and provides a preliminary research basis for further developments in this direction.
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Keywords:
- optical fiber /
- microstructure optical fiber /
- integrated optics /
- discrete optics
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[1] Miller S E. The Bell System Technical Journal, 1969, 48(7):2059
[2] Somekh S,Yariv A. Fiber Optic Communications. In:International Telemetering Conference Proceedings. Los Angeles, 1972. pp.407-418
[3] Hill K O, Fujii Y, Johnson D C et al. Applied Physics Letters, 1978, 32(10):647
[4] Inao S. High Density Multi-core-fiber Cable. In:Proceedings of the 28th International Wire & Cable Symposium. Cherry Hill, 1979. pp.370-384
[5] Hayashi T, Taru T, Shimakawa O et al. Optics Express, 2011, 19(17):16576
[6] Matsuo S, Takenag K, Arakawa Y et al. Optics Letters, 2011, 36(23):4626
[7] Tottori Y, Kobayashi T, Watanabe M. Low Loss Optical Connection Module for 7-core Multi-Core Fiber and Seven Single Mode Fibers. In:2012 IEEE Photonics Society Summer Topical Meeting Series. Seattle, 2012. pp.232-233
[8] Klaus W, Sakaguchi J, Puttnam B J et al. IEEE Photonics Technology Letters, 2012, 24(21):1902
[9] Yuan L B, Yang J, Liu Z H et al. Optics Letters, 2006, 31(18):2692
[10] 苑立波, 杨军, 刘志海. 集成为单根光纤的迈克尔逊干涉仪. 专利号:ZL200610010422.2 [11] Yuan L, Liu Z, Yang J. Optics Letters, 2006, 31(22):3237
[12] 苑立波, 刘志海, 杨军. 单芯光纤与多芯光纤耦合器及其融接拉锥耦合方法. 专利号:ZL200610151033.1 [13] 苑立波, 刘志海, 杨军. 纤维集成式马赫曾德干涉仪及其制造方法. 专利号:ZL200710072625.9 [14] 苑立波, 杨军, 朱晓亮. 毛细管光纤与标准光纤的连接方法. 专利号:ZL200810136913.0 [15] Yuan L, Yang J, Guan C et al. Optics Letters, 2008, 33(6):578
[16] Yuan L, Dai Q, Tian F et al. Optics Letters, 2009, 34(10):1531
[17] 汪杰君, 胡挺, 苑立波. 基于120度夹角反射曝光叠加的异形芯光纤光栅制备技术. 专利号:ZL202010233353.1 [18] 汪杰君, 胡挺, 苑立波. 基于半圆相位补偿板的异形芯光纤光栅制备技术. 专利号:ZL202010233211.5 [19] Liu Z, Bo F, Wang L et al. Optics Letters, 2011, 36(13):2435
[20] Liu Z, Wei Y, Zhang Y et al. Optics Letters, 2015, 40(19):4452
[21] Liu Z, Wei Y, Zhang Y et al. Optics Letters, 2015, 40(12):2826
[22] Liu Z, Zhu Z, Liu L et al. Optics Letters, 2016, 41(18):4320
[23] Ma C, Wang J, Yuan L. Photonics, 2021, 8(6):193
[24] Pevec S, Cibula E, Lenardic B et al. IEEE Photonics Journal, 2011, 3(4):627
[25] Pevec S, Donlagic D. Optics Express, 2012, 20(25):27874
[26] Westbrook P, Abedin K, Taunay T et al. Optics Letters, 2012, 37(19):4014
[27] Zhang M, Yang W, Tian K et al. Optics Letters, 2018, 43(16):3961
[28] He R, Sazio P J, Peacock A C et al. Nature Photonics, 2012, 6(3):174
[29] Yuan L, Dai Q, Tian F et al. Optics Letters, 2009, 34(10):1531
[30] 苑立波, 戴强, 田凤军等. 一种环形分布多芯光纤及其制备方法.专利号:ZL201010138977.1 [31] Deng H, Yuan Y, Yuan L. Optics Letters, 2016, 41(4):824
[32] Imamura K, Mukasa K, Sugizaki R. Trench Assisted Multi-Core Fiber with Large Aeff over 100μm2 and Low Attenuation Loss. In:37th European Conference and Exposition on Optical Communications. Geneva, 2011. Mo.1.LeCervin.1
[33] Hayashi T, Taru T, Shimakawa O et al. Optics Express, 2011, 19(17):16576
[34] Hayashi T,Taru T,Shimakawa O et al. Journal of Lightwave Technology, 2012, 30(4):583
[35] Wrage M,Glas P,Fischer D et al. Optics Communications, 2002, 205(4):367
[36] Huo Y, Cheo P K, King G G. Optics Express, 2004, 12(25):6230
[37] Chuang S L. Journal of Lightwave Technology, 1987, 5(1):5
[38] Haus H,Huang W,Kawakami S et al. Journal of Lightwave Technology, 1987, 5(1):16
[39] Huang W P. Journal of the Optical Society of America, 1994, 11(3):963
[40] Guan C, Yuan L, Dai Q et al. Journal of Lightwave Technology, 2009, 27(11):1741
[41] Uemura H, Takenaga K, Ori T et al. Fused Taper Type fan-in/fanout Device for Multicore EDF. In:8th OptoElectronics and Communications Conference Held Jointly with 2013 International Conference on Photonics in Switching (OECC/PS). Kyoto, 2013. pp.1-2
[42] Uemura H, Omichi K, Takenaga K et al. Fused Taper Type fanin/fan-out Device for 12 Core Multi-Core Fiber. In:2014 Opto-Electronics and Communication Conference and Australian Conference on Optical Fibre Technology. Melbourne,2014. pp.49-50
[43] Kopp V I, Park J, Wlodawski M et al. Pitch Reducing Optical Fiber Array and Multicore Fiber for Space-Division Multiplexing. In:2013 IEEE Photonics Society Summer Topical Meeting Series. Waikoloa, 2013. pp.99-100
[44] Birks T A, Gris-Sanchez I, Yerolatsitis S et al. Advances in Optics and Photonics, 2015, 7(2):107
[45] Leon-Saval S G, Argyros A, Bland-Hawthorn J. Optics Express, 2010, 18(8):8430
[46] Noordegraaf D, Skovgaard P M, Nielsen M D et al. Optics Express, 2009, 17(3):1988
[47] 夏启, 王洪业, 杨世泰等. 激光与光电子学进展, 2021, 58(13):173 [48] 苑立波, 童维军, 江山等. 光学学报, 2022, 42(01):9 [49] Moore J P, Rogge M D. Optics Express, 2012, 20(3):2967
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