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Xiao Lin

Researcher at Zhejiang University

Publications -  132
Citations -  4753

Xiao Lin is an academic researcher from Zhejiang University. The author has contributed to research in topics: Graphene & Plasmon. The author has an hindex of 29, co-authored 123 publications receiving 3357 citations. Previous affiliations of Xiao Lin include Nanyang Technological University & Massachusetts Institute of Technology.

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Formation mechanism of guided resonances and bound states in the continuum in photonic crystal slabs

TL;DR: A formalism, based on the mode expansion method, is developed to describe the guided resonances and bound states in the continuum (BICs) in photonic crystal slabs with one-dimensional periodicity, providing analytic insights to the formation mechanisms of these states.
Journal Article

Formation mechanism of guided resonances and bound states in the continuum in photonic crystal slabs

TL;DR: In this article, a formalism based on the mode expansion method was developed to describe the guided resonances and bound states in the continuum (BICs) in photonic crystal slabs with one-dimensional periodicity.
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Multifrequency Superscattering from Subwavelength Hyperbolic Structures

TL;DR: In this paper, a superscattering in a subwavelength hyperbolic structure is proposed, which can be made from artificial metamaterials or from naturally existing materials, such as hexagonal boron nitride (BN), and the underlying mechanism is revealed to be the multimode resonances at multiple frequency regimes as appear in BN.
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Topological Anderson Insulator in Disordered Photonic Crystals.

TL;DR: This work proposes and experimentally demonstrates a photonic TAI in a two-dimensional disordered gyromagnetic photonic crystal in the microwave regime with robust chiral edge states and demonstrates topological heterostructures that host edge states at interfaces between domains with different disorder parameters.
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Controlling Cherenkov angles with resonance transition radiation

TL;DR: In this paper, the constructive interference of resonance transition radiation from photonic crystals is used to generate both forward and backward effective Cherenkov radiation in a flexible way with high sensitivity to any desired range of velocities.