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- 教师名称:刘亚平
- 教师拼音名称:Liu Yaping
- 出生日期:1993-10-13
- 性别:女
- 学科:光学工程
- 职称:副教授
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L. Hou, Z. Yang*, N. Zhao, Y. Liu, and L. Zhang*, “Central core-assisted photon lantern with lower crosstalk and shorter length”, Optical Design and Testing X 2020, Vol. 11548, pp. 209-215.
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X. Wang, Z. Yang*, W. Yu, Y. Liu, Z. Di, G. Li, and L. Zhang*, “DMD Reduction by Strong Mode Coupling in Few mode Fibers Using Multi laser Inscribed LPFGs,” CLEO: Science and Innovations 2020, paper STh1L.2.
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J. Zhao*, J. Xu, C. Wang, Y. Liu, and Z. Yang, “Experimental demonstration of multi-parameter sensing based on polarized interference of polarization-maintaining few-mode fibers,” Opt. Express 28(14), 20372-20378 (2020).
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Z. Di, Z. Yang, Y. Liu, G. Peng, L. Zhang, and G. Li*, “Measurement of Principal Modes in Few Mode Fibers by S2 Method,” IEEE Photonics J. 12(2), 1-8 (2020).
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H. Sun, Z. Yang*, X. Wang, Y. Liu, H. Yu, C. Peng, and L. Zhang*, “Low-DMD Ladder Fiber with Dual-Step Trench-Assisted Structure”, 26th Optoelectronics and Communications Conference (OECC) 2021, pp. M4C-7.
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X. Wang, Z. Yang*, H. Sun, L. Yang, H. Wang, Y. Liu, H. Yu, C. Peng, and L. Zhang*, “Heterogeneously Integrated Multicore Fibers for Smart Oilfield Applications,” International Conference on Optical Instruments and Technology 2022, pp. 1-2.
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Z. Yang, W. Yu, G. Peng, Y. Liu*, and Lin Zhang, “Recent Progress on Novel DSP Techniques for Mode Division Multiplexing Systems: A Review,” Appl. Sci. 11(4), 1363 (2021).
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Y. Liu*, Y. Jung, Z. Yang, L. Zhang, and David J. Richardson, “Wideband and low-loss mode scrambler for few-mode fibers based on distributed multiple point-loads,” IEEE Photonics Technol. Lett. 13(3), 1-7 (2021).
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L. Hou, Z. Yang*, L. Yang, Y. Liu, and L. Zhang*, “Efficient and compact photonic lanterns using through cascaded tapering,” Next-Generation Optical Communication: Components, Sub-Systems, and Systems XI 2022, paper 12028-7.
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Y. Wang, T. Gao, Y. Liu*, T. Xu, W. Yu, Z. Yang*, Q. Guo, R. Zhou, S. Cao, X. Xiao, and L. Zhang*, “Novel Mirror-flipped Mode Permutation Technique for Long-haul Mode-division Multiplexing Transmissions,” Optical Fiber Communications Conference and Exhibition (OFC) 2022, paper W2B.5.
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X. Huang*, Y. Jung, Y. Liu, K. Harrington, and D. J. Richardson, “Broadband Mode Scramblers for Few-Mode Fibers Based on 3D Printed Mechanically Induced Long-Period Fiber Gratings,” IEEE Photonics Technol. Lett. 34(3), 169-172 (2022).
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T. Xu, T. Gao, Y. Wang, W. Li, W. Li, C. Du, Z. Yang*, Y. Liu*, and L. Zhang*, “High-gain integrated in-line few-mode amplifier enabling 3840-km long-haul transmission,” Photonics Res. 10(12), 2794-2801 (2022).
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Y. Liu, Z. Yang*, J. Zhao, C. Peng, H. Yu, Z. Zhang, and L. Zhang*, “Reduced Multipath Interference for Quasi-Single-Mode Transmission via Distributed Raman Amplification,” Opt. Lett. 47(4), 941-944 (2022).
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Y. Wang, X. Wang, Z. Yang*, Y. Liu*, Z. Huang, and L. Zhang*, “Fan-in/Fan-out for heterogeneous 19-core fibers based on metasurfaces with nonuniform phase plates”, 2023 Optical Fiber Communications Conference and Exhibition (OFC) 2023, paper M3C.7.
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H. Wang, X. Wang, Y. He, Z. Yang*, Y. Liu*, Q. Guo, R. Zhou, X. Xiao, Z. Huang, and L. Zhang*, “New mode-group-permutation strategies for MDL reduction in long-haul MDM systems,” Optical Fiber Communications Conference and Exhibition (OFC) 2023, paper W3E.7.