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Weiqing Gao

Researcher at Hefei University of Technology

Publications -  165
Citations -  1566

Weiqing Gao is an academic researcher from Hefei University of Technology. The author has contributed to research in topics: Photonic-crystal fiber & Supercontinuum. The author has an hindex of 19, co-authored 142 publications receiving 1287 citations. Previous affiliations of Weiqing Gao include Toyota Technological Institute.

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Journal ArticleDOI

Microstructured chalcogenide optical fibers from As(2)S(3) glass: towards new IR broadband sources.

TL;DR: The use of a versatile process using mechanical drilling for the preparation of preforms and then the drawing of MOFs including suspended core fibers for low losses MOFs are described, with background level of losses reaching less than 0.5 dB/m.
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Mid-infrared supercontinuum generation in a suspended-core As2S3 chalcogenide microstructured optical fiber.

TL;DR: The supercontinuum (SC) generation in a suspended-core As(2)S(3) chalcogenide microstructured optical fiber (MOF) is demonstrated and the generalized nonlinear Schrödinger equation agrees well with the experiment.
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Mid-infrared 2000-nm bandwidth supercontinuum generation in suspended-core microstructured Sulfide and Tellurite optical fibers

TL;DR: The experimental observation of supercontinua generation in two kinds of suspended-core microstructured soft-glass optical fibers in low loss, highly nonlinear, tellurite and As2S3 chalcogenide fibers is reported.
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Five-order SRSs and supercontinuum generation from a tapered tellurite microstructured fiber with longitudinally varying dispersion

TL;DR: For the first time five-order stimulated Raman scatterings (SRSs) are observed for soft glass fibers in supercontinuum generation with broad bandwidth under relative simple pump conditions.
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Ultraflat, broadband, and highly coherent supercontinuum generation in all-solid microstructured optical fibers with all-normal dispersion

TL;DR: In this article, the authors proposed an all-solid microstructured fiber composed only of hexagonal glass elements, which has an ultraflat all-normal dispersion profile, covering a wide wavelength interval of approximately 1.55μm.