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Menglin L. N. Chen

Researcher at University of Hong Kong

Publications -  44
Citations -  755

Menglin L. N. Chen is an academic researcher from University of Hong Kong. The author has contributed to research in topics: Angular momentum & Plane wave. The author has an hindex of 12, co-authored 40 publications receiving 494 citations.

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Ultrathin Complementary Metasurface for Orbital Angular Momentum Generation at Microwave Frequencies

TL;DR: In this article, the authors proposed an ultrathin complementary metasurface that converts a left-handed (right-handed) circularly polarized plane wave without orbital angular momentum (OAM), which is associated with the azimuthal phase of the complex electric field.
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Artificial Perfect Electric Conductor-Perfect Magnetic Conductor Anisotropic Metasurface for Generating Orbital Angular Momentum of Microwave with Nearly Perfect Conversion Efficiency

TL;DR: In this paper, the authors proposed two types of novel perfect electric conductor-perfect magnetic conductor anisotropic metasurfaces, one composed of azimuthally continuous loops and the other is constructed by azIMuthally discontinuous dipole scatterers.
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Orbital Angular Momentum Generation and Detection by Geometric-Phase Based Metasurfaces

TL;DR: In this article, a comprehensive review on the geometric-phase based metasurfaces for orbital angular momentum (OAM) generation and detection is presented, which is strongly dependent on the polarization state of incident EM wave and can be interpreted by geometric phase.
Journal ArticleDOI

Orbital Angular Momentum Generation and Detection by Geometric-Phase Based Metasurfaces

TL;DR: In this article, a comprehensive review on the geometric-phase based metasurfaces for orbital angular momentum (OAM) generation and detection is presented, which is strongly dependent on the polarization state of incident EM wave and can be interpreted by geometric phase.
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Detection of Orbital Angular Momentum With Metasurface at Microwave Band

TL;DR: An orbital angular momentum detection approach at microwave band is proposed, and a transmittance function is exploited to model a transmissive metasurface designed to convert an OAM wave to multiple waves, only one of which is Gaussian.