Ultrafast Science, Volume. 3, Issue 1, 0006(2023)

High-performance γ-MnO2 Dual-Core, Pair-Hole Fiber for Ultrafast Photonics

Xiaohui Li1、†,*, Xiangzhen Huang1、†, Yueheng Han1, Enci Chen2, Penglai Guo3, Wenmin Zhang1, Mingqi An1, Zhiwen Pan1, Qian Xu1, Xiaoxiao Guo1, Xiwei Huang1, Yishan Wang4, and Wei Zhao4
Author Affiliations
  • 1School of Physics and Information Technology, Shaanxi Normal University, Xi’an 710000, Shaanxi, China.
  • 2School of Electronic Engineering, Guangxi University of Science and Technology, Liuzhou 545006, Guangxi, China.
  • 3School of Computer Science and Engineering, Macau University of Science and Technology, Taipa 999078, Macau, China.
  • 4State Key Laboratory of Transient Optics and Photonics, Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi’an 710119, Shaanxi, China.
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    Manganese dioxide (MnO2) is a widely used and well-studied 3-dimensional (3D) transition metal oxide, which has advantages in ultrafast optics due to large specific surface area, narrow bandgap, multiple pores, superior electron transfer capability, and a wide range of light absorption. However, few studies have considered its excellent performance in ultrafast photonics. γ-MnO2 photonics devices were fabricated based on a special dual-core, pair-hole fiber (DCPHF) carrier and applied in ultrafast optics fields for the first time. The results show that the soliton molecule with tunable temporal separation (1.84 to 2.7 ps) and 600-MHz harmonic solitons are achieved in the experiment. The result proves that this kind of photonics device has good applications in ultrafast lasers, high-performance sensors, fiber optical communications, etc., which can help expand the prospect of combining 3D materials with novel fiber for ultrafast optics device technology.

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    Xiaohui Li, Xiangzhen Huang, Yueheng Han, Enci Chen, Penglai Guo, Wenmin Zhang, Mingqi An, Zhiwen Pan, Qian Xu, Xiaoxiao Guo, Xiwei Huang, Yishan Wang, Wei Zhao. High-performance γ-MnO2 Dual-Core, Pair-Hole Fiber for Ultrafast Photonics[J]. Ultrafast Science, 2023, 3(1): 0006

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    Paper Information

    Category: Research Articles

    Received: Oct. 26, 2022

    Accepted: Nov. 30, 2022

    Published Online: Dec. 4, 2023

    The Author Email: Li Xiaohui (lixiaohui0523@163.com)

    DOI:10.34133/ultrafastscience.0006

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