Chinese Journal of Lasers, Volume. 49, Issue 17, 1706001(2022)
Air Hole-Assisted Polarization-Maintaining Few-Mode Fiber Supporting 10 Modes
[1] Winzer P J. Scaling optical fiber networks: challenges and solutions[J]. Optics and Photonics News, 26, 28-35(2015).
[2] Schares L, Lee B G, Checconi F et al. A throughput-optimized optical network for data-intensive computing[J]. IEEE Micro, 34, 52-63(2014).
[3] Ishio H, Minowa J, Nosu K. Review and status of wavelength-division-multiplexing technology and its application[J]. Journal of Lightwave Technology, 2, 448-463(1984).
[4] Kawanishi S. Ultrahigh-speed optical time-division-multiplexed transmission technology based on optical signal processing[J]. IEEE Journal of Quantum Electronics, 34, 2064-2079(1998).
[5] Winzer P J, Neilson D T, Chraplyvy A R. Fiber-optic transmission and networking: the previous 20 and the next 20 years[J]. Optics Express, 26, 24190-24239(2018).
[6] Li G F, Bai N, Zhao N B et al. Space-division multiplexing: the next frontier in optical communication[J]. Advances in Optics and Photonics, 6, 413-487(2014).
[7] Essiambre R J, Kramer G, Winzer P J et al. Capacity limits of optical fiber networks[J]. Journal of Lightwave Technology, 28, 662-701(2010).
[8] Puttnam B J, Rademacher G, Luís R S. Space-division multiplexing for optical fiber communications[J]. Optica, 8, 1186-1203(2021).
[9] Tu J J, Li Z H. Review of space division multiplexing fibers[J]. Acta Optica Sinica, 41, 0106003(2021).
[10] Pei L, Li Z Q, Wang J S et al. Review on gain equalization technology of fiber amplifier using space division multiplexing[J]. Acta Optica Sinica, 41, 0106001(2021).
[11] Wang L X, LaRochelle S. Design of eight-mode polarization-maintaining few-mode fiber for multiple-input multiple-output-free spatial division multiplexing[J]. Optics Letters, 40, 5846-5849(2015).
[12] Chen H, Jin C, Huang B et al. Integrated cladding-pumped multicore few-mode erbium-doped fibre amplifier for space-division-multiplexed communications[J]. Nature Photonics, 10, 529-533(2016).
[13] Saitoh K, Matsuo S. Multicore fiber technology[J]. Journal of Lightwave Technology, 34, 55-66(2016).
[14] Ryf R, Randel S, Gnauck A H et al. Mode-division multiplexing over 96 km of few-mode fiber using coherent 6×6 MIMO processing[J]. Journal of Lightwave Technology, 30, 521-531(2012).
[15] Chen S, Wang J. Design of PANDA-type elliptical-core multimode fiber supporting 24 fully lifted eigenmodes[J]. Optics Letters, 43, 3718-3721(2018).
[16] Xue Y B, Li H S, Liu Y J et al. Polarization-maintaining anti-resonant hollow-core optical fibers[J]. Laser & Optoelectronics Progress, 58, 2326001(2021).
[17] Agrell E, Karlsson M, Chraplyvy A R et al. Roadmap of optical communications[J]. Journal of Optics, 18, 063002(2016).
[18] Tkach R W. Scaling optical communications for the next decade and beyond[J]. Bell Labs Technical Journal, 14, 3-9(2010).
[19] Li W P, Kong M, Yu J J. Generation of PDM-16QAM radio frequency signal based on a polarization multiplexing optical modulator[J]. Acta Optica Sinica, 40, 2306002(2020).
[20] Wang L X, Nejad R M, Corsi A et al. Linearly polarized vector modes: enabling MIMO-free mode-division multiplexing[J]. Optics Express, 25, 11736-11749(2017).
[21] Ramachandran S, Kristensen P. Optical vortices in fiber[J]. Nanophotonics, 2, 455-474(2013).
[22] Yaman F, Bai N, Zhu B Y et al. Long distance transmission in few-mode fibers[J]. Optics Express, 18, 13250-13257(2010).
[23] van Putten L D, Fokoua E N, Mousavi S M A et al. Exploring the effect of the core boundary curvature in hollow antiresonant fibers[J]. IEEE Photonics Technology Letters, 29, 263-266(2017).
[24] Chaudhuri S, van Putten L D, Poletti F et al. Low loss transmission in negative curvature optical fibers with elliptical capillary tubes[J]. Journal of Lightwave Technology, 34, 4228-4231(2016).
[25] Maruyama R, Kuwaki N, Matsuo S et al. Experimental investigation of relation between mode-coupling and fiber characteristics in few-mode fibers[C], M2C.1(2015).
[26] Zhao J J, Tang M, Oh K et al. Polarization-maintaining few mode fiber composed of a central circular-hole and an elliptical-ring core[J]. Photonics Research, 5, 261-266(2017).
[27] Xiao H, Li H S, Jian S S. Hole-assisted polarization-maintaining few-mode fiber[J]. Optics & Laser Technology, 107, 162-168(2018).
[28] Jiang S L, Ma L, Zhang Z P et al. Design and characterization of ring-assisted few-mode fibers for weakly coupled mode-division multiplexing transmission[J]. Journal of Lightwave Technology, 36, 5547-5555(2018).
[29] Corsi A, Chang J H, Rusch L A et al. Design of highly elliptical core ten-mode fiber for space division multiplexing with 2×2 MIMO[J]. IEEE Photonics Journal, 11, 7202010(2019).
[30] Xie Y H, Pei L, Zheng J J et al. Design of steering wheel-type ring depressed-core 10-mode fiber with fully improved mode spacing[J]. Optics Express, 29, 15067-15077(2021).
[31] Jung Y, Han S R, Kim S et al. Versatile control of geometric birefringence in elliptical hollow optical fiber[J]. Optics Letters, 31, 2681-2683(2006).
[32] Kim B H, Lee S H, Lin A X et al. Large temperature sensitivity of Sagnac loop interferometer based on the birefringent holey fiber filled with metal indium[J]. Optics Express, 17, 1789-1794(2009).
[33] Moon D S, Kim B H, Lin A X et al. The temperature sensitivity of Sagnac loop interferometer based on polarization maintaining side-hole fiber[J]. Optics Express, 15, 7962-7967(2007).
[34] Kim B H, Moon S, Paek U C et al. All fiber polarimetric modulation using an electro-optic fiber with internal Pb-Sn electrodes[J]. Optics Express, 14, 11234-11241(2006).
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Yubo Xue, Haisu Li, Yajing Liu, Lu Jie, Yu Zhang, Youchao Jiang, Guobin Ren, Li Pei. Air Hole-Assisted Polarization-Maintaining Few-Mode Fiber Supporting 10 Modes[J]. Chinese Journal of Lasers, 2022, 49(17): 1706001
Category: Fiber optics and optical communication
Received: Oct. 18, 2021
Accepted: Dec. 27, 2021
Published Online: Jul. 28, 2022
The Author Email: Haisu Li (lihaisu@bjtu.edu.cn)