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Fanlu Zhang

Researcher at Australian National University

Publications -  19
Citations -  310

Fanlu Zhang is an academic researcher from Australian National University. The author has contributed to research in topics: Nanowire & Lasing threshold. The author has an hindex of 4, co-authored 11 publications receiving 146 citations. Previous affiliations of Fanlu Zhang include Northwestern Polytechnical University.

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All-optical control of microfiber resonator by graphene's photothermal effect

TL;DR: In this paper, an efficient all-optical control of microfiber resonator assisted by graphene's photothermal effect is demonstrated, which enables the implementation of low threshold optical bistability and switching with an extinction ratio exceeding 13 dB.
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Three-dimensional cross-nanowire networks recover full terahertz state

TL;DR: A nanotechnology-based semiconductor detector using cross-nanowire networks that records the full polarization state of terahertz pulses that provides a nanophotonic platform for the further development of THz-based technologies.
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Giant optical pathlength enhancement in plasmonic thin film solar cells using core-shell nanoparticles

TL;DR: In this article, a finite-difference time-domain method is adopted to investigate the light scattering properties of core (metal)-shell (dielectric) nanoparticles, with varying shell thickness and refractive index.
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Graphene-controlled fiber Bragg grating and enabled optical bistability.

TL;DR: Graphene-assisted all-optical control of a fiber Bragg grating enables in-fiber optical bistability and switching and allows the implementation of optical switching with an extinction ratio exceeding 20 dB and a response time in tens of milliseconds.
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Broadband GaAsSb Nanowire Array Photodetectors for Filter-Free Multispectral Imaging.

TL;DR: In this article, the authors demonstrate room-temperature wavelength-selective multipixel photodetectors based on GaAs0.94Sb0.06 nanowire arrays, providing more than 10 light detection channels covering both visible and near-infrared ranges.