发表论文
[1]Lu Y., Tian F.*, Chen Y., Han Z., Zeng Z., Liu C., Yang X., Li L., Zhang J., Characteristics of a capillary single core fiber based on SPR for hydraulic pressure sensing, Optics communications, 2023, 530: 129125.
[2]Wen X., Chang X., Li A., Yang X., Tian F., Liu Z., Copner N., Teng P., Yuan L., ZnO/Cu2O heterojunction integrated fiber-optic biosensor for remote detection of cysteine, Biosensors and Bioelectronics, 2023, 223: 115021.
[3]Hu G., Cui J., Tian F., Gao Z., Yan S., Liu S., Zhang X., Li L., Orthogonally Polarized Dual-Wavelength Gain-Switched Ho:LuLiF4 Pulse Laser, Photonics, 2023, 10: 62.
[4]Lu Y.; Tian F.*; Han Z.; Chen Y.; Zeng Z.; Liu C.; Yang X.; Li L.; Zhang J., Proposal of hydrostatic pressure sensor integrated in a dual-core hollow optical fiber, Optik, 2022, 270: 169970.
[5]Liu, Guangyu; Tian, Fengjun*; Lu, Yipeng; Han, Zhongrui; Yao, Chenyu; Wang, Baoku; Zhang, Yingjie; Li, Li; Zhang, Jianzhong, Zeonex-based high sensitivity dual-channel SPR optical fiber sensor for gaseous analytes in terahertz regime, Optik, 2022, 255: 168656.
[6]Teng P.; Zhu J.; Li Z.; Li K.; Copner N.; Gao S.; Zhao E.; Zhu X.; Liu Z.; Tian F.; Zhang Y., Flexible PAN-Bi2O2CO3–BiOI heterojunction nanofiber and the photocatalytic degradation property, Optical Materials, 2022, 134: 112935.
[7]Wang, BK (Wang, Baoku); Tian, FJ* (Tian, Fengjun); Liu, GY (Liu, Guangyu); Bai, RL (Bai, Ruolan); Li, L (Li, Li); Yang, XH (Yang, Xinghua); Zhang, JZ (Zhang, Jianzhong). A dual-core fiber for tunable polarization splitters in the terahertz regime. Optics Communications, 2021: 126463.
[8]Tian, FJ *(Tian, Fengjun); Liu, GY (Liu, Guangyu); Luo, JF (Luo, Jianfeng); Yao, CY (Yao, Chenyu); Li, L (Li, Li); Yang, XH (Yang, Xinghua); Zhang, JZ (Zhang, Jianzhong). A modified dual-core THz fiber polarization splitter with four subwavelength tubes. Optik, 2021: 165862.
[9]Yang, Xiaotao; Wang, Jianliang; Zhang, Rui; Shi, Zechang; Li, Keyi; Wei, Yidan; Guo, Ao; Wang, Guoshui; He, Chenxi; Cui, Jinhui; Tian, Fengjun; Liu, Chaoming, Modification of spectrum and laser performance on a Tm3+ doped YAlO3 crystal by a specific electron beam radiation, Optik, 2021, 228: 166124.
[10]Yang, Xiaotao; Qiao, Tianxu; Gao, Tianwen; Guo, Ao; Jiang, Ziyin; Tian, Fengjun; Mu, Yanlong; Chen, Shaotian; Zhang, Zijian; He, Chenxi; Wang, Guoshui; He, Yanbo; Liu, Xiaonan, 34.7 W passive peak power Q-switch Ho:Sc2SiO5 laser operating at 2 μm with a few-layer molybdenum disulfide saturable absorber, Optik, 2021, 226: 165486.
[11]Su, ZL (Su, Zhenlan); Tian, FJ *(Tian, Fengjun); Yao, CY (Yao, Chenyu); Liu, GY (Liu, Guangyu); Li, L (Li, Li); Yang, XH (Yang, Xinghua); Zhang, JZ (Zhang, Jianzhong). A modified leaky multi-trench fiber with managing chromatic dispersion [J]. Optics Communications, 2020: 126039.
[12]Su, Zhenlan; Tian, Fengjun*; Zhang, Yingjie; Wang, Baoku; Li, Li; Yang, Xinghua; Zhang, Jianzhong, A modified large mode-field area fiber with managing chromatic dispersion, Optik, 2020, 208: 164104.
[13]Zhang Yingjie, Tian Fengjun*, Su Zhenglan, Bai Ruolan, Li Li, Yang Xinghua, Zhang Jianzhong. Broadband single-polarization optical fiber based on surface plasmon resonance[J]. Applied Optics, 2020, 59(3):779-784.
[14]Xue, Yuchen; Li, Li; Zhang, Bin; Wang, Ruoxing; Cui, Jinhui; Tian, Fengjun; Zhang, Jianzhong, Watt-Level Continuous-Wave Mode-Locked Nd:YVO4 Laser With ReSe2 Saturable Absorber, IEEE Photonics Journal, 2020, 12(5): 1503710.
[15]Wang, Tianzhi; Yan, Fei; Wang, Ruoxing; Tian, Fengjun; Li, Li, Tunable plasmon-induced transparency with a dielectric grating-coupled graphene structure for slowing terahertz waves, Applied Optics, 2020, 59(24): 7179-7185.
[16]Meng Luo; Xinghua Yang; Pingping Teng; Zhihai Liu; Depeng Kong; Jianzhong Zhang; Jun Yang; Fengjun Tian; Danheng Gao; Zhanao Li; Libo Yuan; Kang Li; Nigel Copner, All-fiber phase shifter based on hollow fiber interferometer integrated with Au nanorods, Sensors and Actuators A: Physical , 2020, 301.
[17]Wang, Ruoxing; Li, Li; Guo, Tong; Wang, Tianzhi; Liu, Jianlong; Tian, Hao; Tian, Fengjun; Sun, Weimin, Graphene/liquid crystal hybrid tuning terahertz perfect absorber, Applied Optics, 2019, 58(34): 9406-9410.
[18]Gao, Danheng; Yang, Xinghua; Teng, Pingping; Liu, Zhihai; Yang, Jun; Kong, Depeng; Zhang, Jianzhong; Luo, Meng; Li, Zhanao; Tian, Fengjun; Yuan, Libo, Optofluidic in-fiber integrated surface-enhanced Raman spectroscopy detection based on a hollow optical fiber with a suspended core, Optics Letters, 2019, 44(21): 5173-5176.
[19]Xue, Yuchen; Li, Li; Zhang, Bin; Wang, Ruoxing; Tian, Hao; Cui, Jinhui; Tian, Fengjun; Zhang, Jianzhong, ReSe2 passively Q-switched Nd:Y3Al5O12 laser with near repetition rate limit of microsecond pulse output, Optics Communications, 2019, 445: 165-170.
[20]Yan, Fei; Li, Li; Wang, Ruoxing; Tian, Hao; Liu, Jianlong; Liu, Jianqiang; Tian, Fengjun; Zhang, Jianzhong, Ultrasensitive Tunable Terahertz Sensor With Graphene Plasmonic Grating, Journal of Lightwave Technology, 2019, 37(4): 1103-1112.
[21]Chen Shanshan, Tian Fengjun*, Li Li, Qu Hongkun, Su Zhenlan, Zhang Jianzhong. Double D-shaped hole optical fiber coated with graphene as a polarizer[J]. Applied optics, 2018, 57(27):7659-7666.
[22]Qu Hongkun, Tian Fengjun*, Luo Jianfeng, Li Li, Yang Xinghua, Zhang, Jianzhong. Proposal of high-birefringence twin-core hollow optical fiber[J]. Optical Engineering, 2018, 57(5):1.
[23]Qu Hongkun, Tian Fengjun*, Chen Shanshan, Zhang Yingjie, Luo Jianfeng, Li Li, Yang Xinghua, Zhang Jianzhong. Two-core single-polarization optical fiber with a large hollow coated bimetallic layer[J]. Applied Optics, 2018, 57(10):2446-2451.
[24]Luo Jianfeng, Chen Shanshan, Qu Hongkun, Su Zhenlan, Li Li, Tian Fengjun*. Highly birefringent single-mode suspended-core fiber in Terahertz regime[J]. Journal of Lightwave Technology, 2018, 36(16): 3242-3248.
[25]Wang Ruoxing; Li Li; Tian Hao; Liu Jianqiang; Liu Jianlong; Tian Fengjun; Zhang Jianzhong; Sun Weimin, Full telecomband covered half-wave meta-reflectarray for efficient circular polarization conversion, Optics Communications, 2018, 427: 469-476.
[26]Zhang, B; Li, L; He, C J; Tian, F J; Yang, X T; Cui, J H; Zhang, J Z; Sun, W M, Compact self-Q-switched Tm:YL Flaser at 1.91 mu m, Optics and Laser Technology, 2018, 100: 103-108.
[27]Luo Jianfeng, Tian Fengjun*, Qu Hongkun, Li Li, Zhang Jianzhong, Yang Xinghua, Yuan Libo. Design and numerical analysis of a THz square porous-core photonic crystal fiber for low flattened dispersion, ultrahigh birefringence[J]. Applied Optics, 2017, 56(24):6993-7001.
[28]Wang, Ruoxing; Li, Li; Liu, Jianlong; Yan, Fei; Tian, Fengjun; Tian, Hao; Zhang, Jianzhong; Sun, Weimin, Triple-band tunable perfect terahertz metamaterial absorber with liquid crystal, Optics Express, 2017, 25(26): 32280-32289.
[29]Zhao, Qikai; Tian, Fengjun; Yang, Xinghua; Li, Song; Zhang, Jianzhong; Zhu, Xiaoliang; Yang, Jun; Liu, Zhihai; Zhang, Yu; Yuan, Tingting; Yuan, Libo, Optical fibers with special shaped cores drawn from 3D printed preforms, Optik, 2017, 133: 60-65.
[30]Zhao Enming, Yuan Libo, Tian Fengjun*, Yang Yuanyuan. Preparation and birefringence properties of the embedded multi-core hollow fiber[J]. Acta Optica Sinica, 2013, (02):56-60.
[31]Tian Fengjun*, Yuan Libo . Birefringence properties analysis of a novel three quasi-rectangular cores fiber[C]. Optoelectronics and Microelectronics (ICOM), 2013 International Conference on. IEEE.
[32]Fengjun Tian, Libo Yuan, etc., Embedded multicore hollow fiber with high birefringence, Applied Optics, 2011.
[33]Fengjun Tian, Libo Yuan, etc., A novel elliptical-core hollow fiber applied in phase modulator, Sensor Letters, 2012
[34]Fengjun Tian, Libo Yuan, etc., Fabrication technology of embedded multi-elliptical-cores hollow fiber, Sensor Letters, 2012
[35]Fengjun Tian, Libo Yuan, etc., Birefringence analysis of a two elliptical cores hollow fiber based on finite element method, Proc. SPIE, 2012
[36]Fengjun Tian, Libo Yuan, Qiang Dai, Zhihai Liu, Design and fabrication of embedded two elliptical cores hollow fiber, Proc. SPIE, 2011
[37]田凤军, 苑立波*, 刘志海, 薄夫森, 一种具有高二阶非线性椭圆芯中空光纤, 光学学报,2012
[38]赵恩铭,田凤军*,熔嵌式多芯中空光纤制备方法及其双折射特性,光学学报,2013
[39]Chunying Guan, Fengjun Tian, Qiang Dai, Libo Yuan, Characteristics of embedded-core hollow optical fiber, Optics Express, 2011
[40]Libo Yuan, Qiang Dai, Fengjun Tian, Tao Zhang, A linear-core-array microstructured fiber, Optics Letters, 2009
[41]Xinghua Yang, Yanxin Liu, Fengjun Tian, Libo Yuan, Optical fiber modulator derivates from hollow optical fiber with suspended core, Optics Letters, 2012
[42]Chunying Guan, Libo Yuan, Fengjun Tian, Qiang Dai, Characteristics of Near-Surface-Core Optical Fibers, Journal of Lightwave Technology, 2011
[43]Zhihai Liu, Fusen Bo, Lei Wang, Fengjun Tian, Libo Yuan, Integrated fiber Michelson interferometer based on poled hollow twin-core fiber. Optics Letters, 2011