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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.

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Investigation of Humidity and Temperature Response of a Silica Gel Coated Microfiber Coupler

TL;DR: In this article, the authors investigated the humidity and temperature responses of a microfiber coupler (MFC) coated with silica gel, which was fabricated by fusing and tapering two singlemode fibers using a microheater brushing technique.
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Transmitter and receiver DSP for 112 Gbit/s PAM-4 amplifier-less transmissions using 25G-class EML and APD.

TL;DR: The receiver computational complexity can be effectively reduced by employing appropriate ETC and Pre-EQ in the transmitter, and a joint equalization and error table generation (JEEG) module is proposed.
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The use of a bend singlemode-multimode-singlemode (SMS) fibre structure for vibration sensing

TL;DR: In this paper, a bend singlemode-multimode-singlemode (SMS) fiber structure based vibration sensor is proposed and developed, which can detect both vibration frequencies and amplitudes over a broad range with good sensitivity.
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Design and optimization of silicon concentric dual-microring resonators for refractive index sensing

TL;DR: In this article, a silicon concentric dual-microring resonator for refractive index sensing is designed, which can realize the extinction ratio (ER) of 30dB, sensitivity of 180nm/refractive index units (RIU), and detection limit of 1.1×10 −5 ǫ.
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High Degree Picosecond Pulse Compression in Chalcogenide-Silicon Slot Waveguide Taper

TL;DR: In this article, a chalcogenide (As2S3)-based slot waveguide taper with exponentially decreasing dispersion profile was proposed to realize high-degree nonlinear pulse compression of low-power chirped solitons.