169 Papers
376 Citations
Guixin Li is an academic researcher from Southern University of Science and Technology. The author has contributed to research in topics: Photonics & Metamaterial. The author has an hindex of 32, co-authored 133 publications. Previous affiliations of Guixin Li include University of Birmingham & University of Paderborn.
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Papers
Transport, magnetic, specific heat, internal friction, and shear modulus in the charge ordered La0.25Ca0.75MnO3 manganite
TL;DR: In this paper, the resistivity, magnetization, specific heat, shear modulus, and internal friction in the charge-ordered (CO) La 0.25Ca 0.75MnO3 were studied.
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Metasurface interferometry towards quantum sensors
Philip Georgi,Marcello Massaro,Kai-Hong Luo,Basudeb Sain,Nicola Montaut,Harald Herrmann,Thomas Weiss,Guixin Li,Christine Silberhorn,Thomas Zentgraf +9 more
TL;DR: In this paper, a hybrid integrated quantum photonic system that is capable of entangling and disentangling two-photon spin states at a dielectric metasurface was demonstrated.
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Epidermal electrodes with enhanced breathability and high sensing performance
Yueji Wang,T. Hong,Liu Wang,Guixin Li,Ningning Bai,C. Li,Peng Lu,Minkun Cai,Zhigang Wu,Zhigang Wu,Nanshu Lu,B. Yu,Jian Zhang,Chuan Fei Guo +13 more
TL;DR: In this article, a hydrophilically treated Au nanomeshes (AuNMs) exhibit a sweat evaporation rate significantly faster than that of naked skin while maintaining high stretchability and exceptional conformability.
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Second Harmonic Generation Covering the Entire Visible Range from a 2D Material–Plasmon Hybrid Metasurface
Yufeng Ding,Chengrong Wei,Chengrong Wei,Huimin Su,Shuoyan Sun,Zhiyong Tang,Zhaona Wang,Guixin Li,Dahe Liu,Shangjr Gwo,Junfeng Dai,Jin-Wei Shi +11 more
TL;DR: In this article, a hybrid structure is designed which combines a chirped surface plasmon metasurface with a monolayer transition metal dichalcogenide (TMDC) to achieve a coherent second harmonic generation (SHG) covering the entire visible light spectrum.
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Highly flexible near-infrared metamaterials
Kok Wai Cheah,Guixin Li +1 more
TL;DR: In this article, a novel multilayer flexible metamaterial that can work at near infrared (NIR) regime that can be fabricated on transparent PET substrate using flip chip transfer (FCT) technique is presented.
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