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3篇 您的检索式:作者名="Wang Ti Hu"
    题名 作者 年代 出处 被引量
1Genetic variants in fas signaling pathway genes and risk of gastric cancer显示文摘Paula L. Hyland Shih‐Wen Lin Nan Hu Han Zhang Lemin Wang Hua Su Chaoyu Wang Ti Ding Ze‐Zhong Tang Jin‐Hu Fan You‐Lin Qiao Xiaoqin Xiong William Wheeler Carol Giffen Kai Yu Jeff Yuenger Laurie Burdett Zhaoming Wang Stephen J. Chanock Margaret A. Tucker San 2014Int J Cancer2014,,4:1
2Solidification Interface Shape Control in a Continuous Czochralski Silicon Growth System 显示文摘Wang ChenLei Zhang Hui Wang Ti Hu Zheng Li Li 2006Crystal Growth2006,287,:1
3Versatile optical manipulation of trions,dark excitons and biexcitons through contrasting exciton-photon coupling显示文摘Various exciton species in transition metal dichalcogenides(TMDs),such as neutral excitons,trions(charged excitons),dark excitons,and biexcitons,have been individually discovered with distinct light-matter interactions.In terms of valley-spin locked band structures and electron-hole configurations,these exciton species demonstrate flexible control of emission light with degrees of freedom(DOFs)such as intensity,polarization,frequency,and dynamics.However,it remains elusive to fully manipulate different exciton species on demand for practical photonic applications.Here,we investigate the contrasting light-matter interactions to control multiple DOFs of emission light in a hybrid monolayer WSe2-Ag nanowire(NW)structure by taking advantage of various exciton species.These excitons,including trions,dark excitons,and biexcitons,are found to couple independently with propagating surface plasmon polaritons(SPPs)of Ag NW in quite different ways,thanks to the orientations of transition dipoles.Consistent with the simulations,the dark excitons and dark trions show extremely high coupling efficiency with SPPs,while the trions demonstrate directional chiral-coupling features.This study presents a crucial step towards the ultimate goal of exploiting the comprehensive spectrum of TMD excitons for optical information processing and quantum optics.Zhe Li Xin-Yuan Zhang Rundong Ma Tong Fu Yan Zeng Chong Hu Yufeng Cheng Cheng Wang Yun Wang Yuhua Feng Takashi Taniguchi Kenji Watanabe Ti Wang Xiaoze Liu Hongxing Xu 2023Light(Science & Applications)2023,12,12:0
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