Large mode area microstructured fiber supporting 56 super-OAM modes.
暂无分享,去创建一个
Wei Wang | Lantian Hou | Yuefeng Qi | L. Hou | Ying Han | Y. Qi | Ying Han | Zheng Li | F. Zhou | Haidong Xu | Qi-Hao Yang | Fan-Di Zhou | Zheng-Ran Li | Wei Wang | Haidong Xu | Qinglei Yang
[1] Yan-qing Lu,et al. Orbital angular momentum (OAM) conversion and multicasting using N-core supermode fiber , 2017, Scientific Reports.
[2] Hua Zhao,et al. All-fiber stable orbital angular momentum beam generation and propagation. , 2018, Optics express.
[3] A. E. Willner,et al. Mode Properties and Propagation Effects of Optical Orbital Angular Momentum (OAM) Modes in a Ring Fiber , 2012, IEEE Photonics Journal.
[4] L. Nelson,et al. Space-division multiplexing in optical fibres , 2013, Nature Photonics.
[5] Antoine Vianou,et al. Ring-core photonic crystal fiber for propagation of OAM modes. , 2019, Optics letters.
[6] Xiaoguang Zhang,et al. A New Type Circular Photonic Crystal Fiber for Orbital Angular Momentum Mode Transmission , 2016, IEEE Photonics Technology Letters.
[7] B. M. Rodr'iguez-Lara,et al. Symmetric supermodes in cyclic multicore fibers , 2018, OSA Continuum.
[8] J. P. Woerdman,et al. Orbital angular momentum of light and the transformation of Laguerre-Gaussian laser modes. , 1992, Physical review. A, Atomic, molecular, and optical physics.
[9] Hongzhi Jia,et al. Theoretical proposal of a low-loss wide-bandwidth silicon photonic crystal fiber for supporting 30 orbital angular momentum modes , 2017, PloS one.
[10] Sophie LaRochelle,et al. Design, fabrication and validation of an OAM fiber supporting 36 states. , 2014, Optics express.
[11] He-ming Chen,et al. Design of a circular photonic crystal fiber with square air-holes for orbital angular momentum modes transmission , 2018 .
[12] Yuan Yuan,et al. A hollow ring-core polymer optical fiber for supra-high bandwidth data communication , 2019, Optics Communications.
[13] A. K. Mairaj,et al. Nonsilica glasses for holey fibers , 2005, Journal of Lightwave Technology.
[14] Junhe Zhou,et al. Analytical formulation of super-modes inside multi-core fibers with circularly distributed cores. , 2014, Optics express.
[15] Jian Wang,et al. Supermode fiber for orbital angular momentum (OAM) transmission. , 2015, Optics express.
[16] Siyuan Yu,et al. Orbital-angular-momentum mode-group multiplexed transmission over a graded-index ring-core fiber based on receive diversity and maximal ratio combining. , 2017, Optics express.
[17] Kazuhiko Aikawa,et al. Six-Mode Seven-Core Fiber for Repeated Dense Space-Division Multiplexing Transmission , 2018, Journal of Lightwave Technology.
[18] Wei Jian,et al. Polarization properties of fiber-based orbital angular momentum modes , 2017 .
[19] Zhi-Chao Luo,et al. Photonic crystal fiber for supporting 26 orbital angular momentum modes. , 2016, Optics express.
[20] Sanjeev Soni,et al. Controlling Parameters for Plasmonic Photothermal Ablation of a Tumor , 2016, IEEE Journal of Selected Topics in Quantum Electronics.
[21] Wenbo Zhang,et al. A design strategy of the circular photonic crystal fiber supporting good quality orbital angular momentum mode transmission , 2017 .
[22] Leslie A. Rusch,et al. Carrying Data on the Orbital Angular Momentum of Light , 2018, IEEE Communications Magazine.
[23] Xiaoguang Zhang,et al. A circular photonic crystal fiber supporting 26 OAM modes , 2016 .
[24] Guiyao Zhou,et al. Design and Analysis of a Microstructure Ring Fiber for Orbital Angular Momentum Transmission , 2016, IEEE Photonics Journal.
[25] Zhongmin Yang,et al. Optical fiber design with orbital angular momentum light purity higher than 99.9. , 2015, Optics express.
[26] Jian Wang,et al. Orbital angular momentum mode multiplexed transmission in heterogeneous few-mode and multi-mode fiber network. , 2018, Optics letters.
[27] Gang Liu,et al. Theoretical Analysis of a 750-nm Bandwidth Hollow-Core Ring Photonic Crystal Fiber With a Graded Structure for Transporting 38 Orbital Angular Momentum Modes , 2018, IEEE Access.
[28] M. Deng,et al. Orbital angular momentum generation in two-mode fiber, based on the modal interference principle. , 2019, Optics letters.
[29] M. Nakazawa,et al. Low loss photonic crystal fiber fabricated by slurry casting method , 2012, 2012 Conference on Lasers and Electro-Optics (CLEO).
[30] H. Ghafouri-Shiraz,et al. Quantum Transmission Line Modeling Method and Its Application to Quantum Dot Amplifiers , 2016, IEEE Journal of Quantum Electronics.
[31] Guifang Li,et al. Few-Mode SDM Receivers Exploiting Parallelism of Free Space , 2019, IEEE Photonics Journal.
[32] L. Rusch,et al. Optical fibers for the transmission of orbital angular momentum modes , 2017 .