主要論文
(*代表通訊作者)
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[1] X. Wang; H. Zhou; M. Chen; Y. He; Z. Zhang*; J. Gan*; and Z. Yang, “Wearable ultrasensitive and rapid human physiological monitoring based on microfiber Sagnac interferometer,” Sci. China Inform. Sci., 2024, 67(3): 132403.
[2] Z. Zhang, S. Gao, L. Zhang, Q. Ning, C. Ji, J. Yuan, W. Chen*, and J. Gan*, “All-fiberized sorter for nondestructively splitting the orbital angular momentum modes,” Opt. Commun., 2024, 560: 130462.
[3] X. Wang, H. Zhou, M. Chen, Y. He, Z. Zhang*, J. Gan*, and Z. Yang, “Highly sensitive strain sensor based on microfiber coupler for wearable photonics healthcare,” Adv. Intell. Syst. 5(5), 2200344 (2023).
[4] Z. Zhang, J. Lu, T. Liu, J. Gan, X. Heng, M. Wu, F. Li*, and Z. Yang*, “Azimuthally and radially polarized orbital angular momentum modes in valley topological photonic crystal fiber,” Nanophotonics 10(16), 4067-4074 (2021).
[5] Z. Zhang, F. Li, J. Lu, T. Liu, X. Heng, Y. He, H. Liang, J. Gan*, and Z. Yang*, “Broadband photonic topological insulator based on triangular-holes array with higher energy filling efficiency,” Nanophotonics 9(9), 2839-2846 (2020) .
[6] Z. Zhang, J. Gan, X. Heng, M. Li, J. Li, S. Xu, Z. Yang*, “Low-crosstalk orbital angular momentum fiber coupler design,” Opt. Express, 25(10): 11200-11209 (2017).
[7] Z. Zhang, J. Gan, X. Heng, M. Li, J. Li, S. Xu, and Z. Yang*, “High order vector mode coupling mechanism based on mode matching method,” J. Opt., 19(6): 065702 (2017).
[8] Z. Zhang, J. Gan, X. Heng, Y. Wu, Q. Li, Q. Qian, D. Chen, and Z. Yang*, “Optical fiber design with orbital angular momentum light purity higher than 99.9%,” Opt. Express 23(23), 29331-29341 (2015).
[9] Z. Zhang, J. Gan, T. Yang, Y. Wu, Q. Li, S. Xu, and Z. Yang*, “All-fiber mode-locked laser based on microfiber polarizer,” Opt. Lett. 40(5), 784-787 (2015).
[10] Z. Zhang, W. Fan, J. Gan, C. Li, and Z. Yang*, “Single-frequency microfiber single-knot laser,” Appl. Phys. Express, 6(4): 042702 (2013).
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科研項(xiàng)目
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(1) 國(guó)家自然科學(xué)基金青年基金項(xiàng)目,,62305057, 渦旋光波導(dǎo)耦合結(jié)構(gòu)的克爾效應(yīng)及其在全光開關(guān)中的應(yīng)用,,2024/01至2026/12,,30萬元,主持,。
(2) 廣東省基礎(chǔ)與應(yīng)用基礎(chǔ)研究基金項(xiàng)目區(qū)域聯(lián)合基金-青年基金項(xiàng)目,,2021A1515110919,
光纖中角向/徑向偏振的軌道角動(dòng)量模式的形成機(jī)理與特性研究,,2021/10至2024/09,,10萬元,主持,。
(3) 橫向課題項(xiàng)目,,KH23286,面向3D光纖芯片的高效率層間耦合技術(shù)論證,,2023/09至2024/08,,9.8萬元,主持,。
(4) 橫向課題項(xiàng)目,,KH22131,光子集成芯片與光纖高效耦合技術(shù)論證,,2022/06至2023/05,,4.8萬元,主持,,已結(jié)題,。
(5) 中國(guó)博士后科學(xué)基金面上資助(第65批),2019M652872,,基于光子晶體邊緣態(tài)的軌道角動(dòng)量光纖研究,,2018/06至2021/05,,8萬,主持,,已結(jié)題,。
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