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Bingwei Chen

Researcher at China University of Geosciences (Wuhan)

Publications -  6
Citations -  78

Bingwei Chen is an academic researcher from China University of Geosciences (Wuhan). The author has contributed to research in topics: Photonic-crystal fiber & Fiber laser. The author has an hindex of 4, co-authored 6 publications receiving 60 citations.

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Plasmon-Induced Transparency and Refractive Index Sensing in Side-Coupled Stub-Hexagon Resonators

TL;DR: A nanoscale structure which comprises metal-insulator-metal (MIM) waveguide, stub resonator, and hexagonal resonator is proposed to realize plasmon-induced transparency (PIT) response as mentioned in this paper.
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Broadband Optical Reflection Modulator in Indium-Tin-Oxide-Filled Hybrid Plasmonic Waveguide with High Modulation Depth

TL;DR: In this article, a surface plasmon resonance (SPR)-based optical reflection modulator consisting of vertically stacked silica-silicon-HfO2-ITO, HfO 2-Ag-prism multilayer is proposed and numerically investigated.
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Tunable all-optical actively mode-locked fiber laser at 2 µ m based on tellurite photonic crystal fiber

TL;DR: In this article, an all-optical actively mode-locked fiber laser is proposed for 2?m optical fiber communication systems, which employs a section of highly nonlinear group-velocity-matched tellurite photonic crystal fiber as the mode-locker.
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All-Optical Actively Mode-Locked Fiber Laser at 2-μm Based on Interband Modulation

TL;DR: In this paper, the authors have achieved a high repetition rate and tunable pulse generation near ∼2μm through an all-optical actively mode-locked fiber laser, where the thulium-doped fiber laser cavity is modulated by the optical injection at 1.55 μ m via a nonlinear optical loop mirror.
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Investigation of Germanium-Loaded Slot Waveguides for Mid-Infrared Third Harmonic Generation

TL;DR: In this article, a metal-semiconductor-metal slot waveguide (MSMSW) was proposed for MIR light generation with high nonlinear coefficient, where the required interaction length is limited by the large Ohmic loss, and therefore, perfect phase matching condition (PMC) is not necessary.