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Jinhui Yuan

Researcher at Beijing University of Posts and Telecommunications

Publications -  337
Citations -  2484

Jinhui Yuan is an academic researcher from Beijing University of Posts and Telecommunications. The author has contributed to research in topics: Photonic-crystal fiber & Dispersion (optics). The author has an hindex of 20, co-authored 285 publications receiving 1694 citations. Previous affiliations of Jinhui Yuan include University of Science and Technology Beijing & Hong Kong Polytechnic University.

Papers
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Ultrahigh-sensitivity label-free singlemode- tapered no core-singlemode fiber immunosensor for Listeria monocytogenes detection

TL;DR: In this paper , an ultra-high-sensitivity microfiber interferometer fiber ring laser (FRL) biosensor was proposed and investigated for Listeria monocytogenes (L. monokogenes) detection, which is composed of a singlemode tapered no core-singlemode (STNS) fiber configuration.
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Supercontinuum generation from ultraviolet and visible wavelength based on the higher-order modes of photonic crystal fiber

TL;DR: Using photonic crystal fiber (PCF) with the zero dispersion wavelengths of fundamental mode and second-order mode around 887-nm and 758-nm, supercontinuum (SC) from 180 to 1100nm was efficiently generated in the ultraviolet and visible wavelengths by Ti: sapphire laser with working wavelength of 790-nm with pulse width of 120-fs as mentioned in this paper.
Proceedings ArticleDOI

Detection of volatile organic compounds using an optical fiber sensor coated with a sol-gel silica layer containing immobilized Nile red

TL;DR: In this paper, a simple volatile organic compound (VOC) sensor based on a tapered small core singlemode fiber (SCSMF) structure is reported, which is fabricated using a customized microheater brushing technique.
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Generation of parabolic pulse in a dispersion and nonlinearity jointly engineered silicon waveguide taper

TL;DR: In this article, the authors numerically investigate the generation of parabolic pulses in a silicon waveguide taper with simultaneous variations of the group-velocity dispersion and nonlinearity along the propagation direction.
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Highly efficient Cherenkov radiation generation in the irregular point of hollow-core photonic crystal fiber

TL;DR: In this paper, the impacts of pump power and wavelength on the Cherenkov radiation (CR) were investigated, and corresponding nonlinear processes were discussed, and the maximum output power ratio of the CR at 539 nm to that of the residual pump was calculated to be 24.32:1, the width of the output optical spectrum at the visible wavelength broadens from 35 nm to 62 nm.