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Yijian Huang

Researcher at Shenzhen University

Publications -  22
Citations -  624

Yijian Huang is an academic researcher from Shenzhen University. The author has contributed to research in topics: Photonic-crystal fiber & Fiber optic sensor. The author has an hindex of 10, co-authored 21 publications receiving 403 citations.

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Surface plasmon resonance biosensor based on gold-coated side-polished hexagonal structure photonic crystal fiber.

TL;DR: The experimental results of the plasmon resonance wavelength sensitivity agree well with the theoretical results, and the presented gold-coated D-shaped PCF SPR sensor could be used as a simple, cost-effective, high sensitivity device in bio-chemical detection.
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Highly sensitive surface plasmon resonance biosensor based on a low-index polymer optical fiber

TL;DR: A highly sensitive refractive index sensor based on surface plasmon resonance in a side-polished low-index polymer optical fiber is proposed for biosensing, which is expected to have potential applications in cost-effective bio- and chemical-sensing.
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Asymmetrical in-fiber Mach-Zehnder interferometer for curvature measurement.

TL;DR: A compact and highly-sensitive curvature sensor based on a Mach-Zehnder interferometer created in a photonic crystal fiber that exhibited a high curvature sensitivity and a temperature sensitivity suitable for high-sensitivity curvature sensing in harsh environments is demonstrated.
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Liquid modified photonic crystal fiber for simultaneous temperature and strain measurement

TL;DR: In this paper, a liquid modified photonic crystal fiber (PCF) integrated with an embedded directional coupler and multi-mode interferometer is fabricated by infiltrating three adjacent air holes of the innermost layer with standard 1.48 refractive index liquids.
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Tunable Electro-Optical Modulator Based on a Photonic Crystal Fiber Selectively Filled With Liquid Crystal

TL;DR: In this paper, a liquid-crystal-filled photonic crystal fiber (PCF) was proposed for electro-optical modulation and the E7 liquid crystal was precisely filled in one of the innermost air holes of the PCF and formed an in-fiber optical coupler, and the resonance wavelength can be tuned with a sensitivity of 5.594nm/V rms when an external voltage is applied.