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Baicheng Yao
Researcher at University of Electronic Science and Technology of China
Publications - 96
Citations - 2109
Baicheng Yao is an academic researcher from University of Electronic Science and Technology of China. The author has contributed to research in topics: Graphene & Microfiber. The author has an hindex of 21, co-authored 75 publications receiving 1465 citations. Previous affiliations of Baicheng Yao include University of California, Los Angeles & University of California.
Papers
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Journal ArticleDOI
Gate-tunable frequency combs in graphene-nitride microresonators
Baicheng Yao,Baicheng Yao,Baicheng Yao,Shu-Wei Huang,Shu-Wei Huang,Yuan Liu,Yuan Liu,Abhinav Kumar Vinod,Chanyeol Choi,Michael Hoff,Yongnan Li,Mingbin Yu,Ziying Feng,Dim-Lee Kwong,Yu Huang,Yunjiang Rao,Xiangfeng Duan,Chee Wei Wong +17 more
TL;DR: The gated intracavity tunability of graphene-based optical frequency combs is demonstrated, by coupling the gate-tunable optical conductivity to a silicon nitride photonic microresonator, thus modulating its second- and higher-order chromatic dispersions by altering the Fermi level.
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Graphene-coated microfiber Bragg grating for high-sensitivity gas sensing
Yu Wu,Baicheng Yao,Anqi Zhang,Yun-Jiang Rao,Zegao Wang,Yang Cheng,Yuan Gong,Weili Zhang,Yuanfu Chen,Kin Seng Chiang +9 more
TL;DR: Experimental results indicate that the GMFBG-based NH3 gas sensor has fast response due to its highly compact structure and such a miniature fiber-optic element may find applications in high sensitivity gas sensing and trace analysis.
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2D Material Optoelectronics for Information Functional Device Applications: Status and Challenges
TL;DR: The optical and electrical properties of graphene, transition metal dichalcogenides, black phosphorus, MXene, and their derivative van der Waals heterostructures are comprehensively reviewed, followed by the design and fabrication of these 2D material‐based optical structures in implementation.
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Broadband gate-tunable terahertz plasmons in graphene heterostructures
Baicheng Yao,Baicheng Yao,Baicheng Yao,Yuan Liu,Shu-Wei Huang,Shu-Wei Huang,Chanyeol Choi,Zhenda Xie,Zhenda Xie,Jaime Gonzalo Flor Flores,Yu Wu,Mingbin Yu,Dim-Lee Kwong,Yu Huang,Yun-Jiang Rao,Xiangfeng Duan,Chee Wei Wong +16 more
TL;DR: In this article, a counter-pumped all-optical difference frequency process was proposed to coherently generate and control terahertz plasmons in atomic-layer graphene with octave-level tunability and high efficiency.
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Broadband gate-tunable THz plasmons in graphene heterostructures
Baicheng Yao,Yuan Liu,Shu-Wei Huang,Chanyeol Choi,Zhenda Xie,Jaime Gonzalo Flor Flores,Yu Wu,Mingbin Yu,Dim-Lee Kwong,Yu Huang,Yunjiang Rao,Xiangfeng Duan,Chee Wei Wong +12 more
TL;DR: In this article, a counter-pumped all-optical difference frequency process was proposed to coherently generate and control THz plasmons in atomic layer graphene with an octave tunability and high efficiency.