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Manipulating the magnetic properties of MnBi_(2)Te_(4)through electrochemical organic molecule intercalation
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作者 Yu Du Heng Zhang +7 位作者 Fuwei Zhou Tianqi Wang Jiajun Li Wuyi Qi Yiying Zhang Yefan Yu fucong fei Fengqi Song 《Chinese Physics B》 2025年第8期427-433,共7页
MnBi_(2)Te_(4),which is emerging as an intrinsic antiferromagnetic(AFM)topological insulator,provides a unique platform to investigate the interplay between magnetism and topology.Modulating its magnetic properties en... MnBi_(2)Te_(4),which is emerging as an intrinsic antiferromagnetic(AFM)topological insulator,provides a unique platform to investigate the interplay between magnetism and topology.Modulating its magnetic properties enables the observation of exotic quantum phenomena such as the quantum anomalous Hall effect,axion insulator states,and Majorana fermions.While the intercalation of Bi_(2)Te_(3)can tune its magnetism,synthesizing pure-phase MnBi_(2)Te_(4)with uniform Bi_(2)Te_(3)intercalation remains challenging,and the fixed interlayer spacing of Bi_(2)Te_(3)limits magnetic coupling tunability.Here,we utilize electrochemical organic molecule intercalation to expand the van der Waals gap of MnBi_(2)Te_(4)and modulate its magnetic properties.Through x-ray diffraction(XRD)characterizations,we confirm that the interlayer spacing of MnBi_(2)Te_(4)is expanded from 13.6°A to 30.5°A and 61.0°A by intercalating quaternary ammonium cations(THA^(+)and CTA^(+)),respectively.The THA-MnBi_(2)Te_(4)exhibits dual complex magnetic behavior,combining AFM ordering with a Neel temperature(T_(N))of 12 K and a small ferromagnetic hysteresis loop at 2 K.The CTA-MnBi_(2)Te_(4)shows robust ferromagnetism,with a Curie point(T_(C))of 15 K,similar to that of the MnBi_(2)Te_(4)monolayer.These results demonstrate that remarkable changes in the magnetic properties of MnBi_(2)Te_(4)can be achieved via electrochemical intercalation,providing new insights into manipulating magnetism in layered magnetic materials. 展开更多
关键词 topological insulators electrochemical intercalation magnetism tuning van der Waals magnetic materials
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原子制造的物质科学基础 被引量:1
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作者 戴庆 宋凤麒 +13 位作者 潘曹峰 刘开辉 姚广保 郑浩 谭元植 潘金波 杜灵杰 黄璞 王曾晖 陈辉 张晨栋 费付聪 徐红星 戴亚飞 《科学通报》 EI CAS CSCD 北大核心 2024年第19期2777-2788,共12页
近年来,原子制造技术备受关注,已成为各国积极追求的前沿制造技术领域.一代物质科学,一代制造革新,原子制造技术的发展不仅仰赖于深厚的物质科学底蕴,还需要解决高效的原子精准操控与测量、原子尺度结构的物性设计等多个方面的基础科学... 近年来,原子制造技术备受关注,已成为各国积极追求的前沿制造技术领域.一代物质科学,一代制造革新,原子制造技术的发展不仅仰赖于深厚的物质科学底蕴,还需要解决高效的原子精准操控与测量、原子尺度结构的物性设计等多个方面的基础科学问题.2023年3月,国家自然科学基金委员会交叉科学部在武汉召开了主题为“原子制造的物质科学基础”的战略研讨会.本文基于会议研讨的相关内容,对原子制造技术的发展背景、概念内涵以及面临的挑战进行了凝练,并提出如何利用该技术推动物质科学的快速发展,同时也就国家自然科学基金委员会对该领域的顶层设计和战略规划提出了政策建议. 展开更多
关键词 原子制造 物质科学 原子操控 原子级制造 单原子器件 物质创制
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Tunable optical topological transitions of plasmon polaritons in WTe_(2) van der Waals films 被引量:1
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作者 Yuangang Xie Chong Wang +9 位作者 fucong fei Yuqi Li Qiaoxia Xing Shenyang Huang Yuchen Lei Jiasheng Zhang Lei Mu Yaomin Dai Fengqi Song Hugen Yan 《Light: Science & Applications》 SCIE EI CSCD 2023年第9期1807-1817,共11页
Naturally existing in-plane hyperbolic polaritons and the associated optical topological transitions,which avoid the nano-structuring to achieve hyperbolicity,can outperform their counterparts in artificial metasurfac... Naturally existing in-plane hyperbolic polaritons and the associated optical topological transitions,which avoid the nano-structuring to achieve hyperbolicity,can outperform their counterparts in artificial metasurfaces.Such plasmon polaritons are rare,but experimentally revealed recently in WTe_(2)van der Waals thin films.Different from phonon polaritons,hyperbolic plasmon polaritons originate from the interplay of free carrier Drude response and interband transitions,which promise good intrinsic tunability.However,tunable in-plane hyperbolic plasmon polariton and its optical topological transition of the isofrequency contours to the elliptic topology in a natural material have not been realized.Here we demonstrate the tuning of the optical topological transition through Mo doping and temperature.The optical topological transition energy is tuned over a wide range,with frequencies ranging from 429 cm^(−1)(23.3 microns)for pure WTe_(2)to 270 cm^(−1)(37.0 microns)at the 50%Mo-doping level at 10 K.Moreover,the temperature-induced blueshift of the optical topological transition energy is also revealed,enabling active and reversible tuning.Surprisingly,the localized surface plasmon resonance in skew ribbons shows unusual polarization dependence,accurately manifesting its topology,which renders a reliable means to track the topology with far-field techniques.Our results open an avenue for reconfigurable photonic devices capable of plasmon polariton steering,such as canaling,focusing,and routing,and pave the way for low-symmetry plasmonic nanophotonics based on anisotropic natural materials. 展开更多
关键词 TOPOLOGICAL TRANSITIONS POLAR
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Observations of nodal lines in the topological semimetal ZrSnTe 被引量:1
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作者 Bo Chen Bo Zhang +6 位作者 JiHai Yu fucong fei Muhammad Naveed Yi Zhang Zhe Sun XianGang Wan FengQi Song 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2020年第2期111-116,共6页
Performing angle-resolved photoemission spectroscopy(ARPES) and theoretical calculations for ZrSnTe, we find a nodal line in the kx-ky plane with a tiny gap and two nodal lines without gaps along the kzdirection. The ... Performing angle-resolved photoemission spectroscopy(ARPES) and theoretical calculations for ZrSnTe, we find a nodal line in the kx-ky plane with a tiny gap and two nodal lines without gaps along the kzdirection. The constant energy contours are plotted in the kx-ky plane at a photon energy of 30 e V to examine the gapping feature of the nodal line. In addition, we depict the band dispersions along the Γ-M and Γ-X directions from the ARPES images at photon energies ranging from 24 to 40 e V. The kz mapping confirms the presence of stable Dirac points with obvious kzdependences along the M-A and X-R directions. In this paper, we report the two types of nodal lines associated with the theoretical local-density approximation calculations, broadening the horizons of nodal-line semimetal research. 展开更多
关键词 nodal-line semimetals ZrSnTe ARPES
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Tunable magnetism and band structure in kagome materials RETi3Bi4 family with weak interlayer interactions
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作者 Jingwen Guo Liqin Zhou +19 位作者 Jianyang Ding Gexing Qu Zhengtai Liu Yu Du Heng Zhang Jiajun Li Yiying Zhang Fuwei Zhou Wuyi Qi Minghui Cui Yongxin Zhang Fengyi Guo Tianqi Wang fucong fei Yaobo Huang Tian Qian Dawei Shen You Song Hongming Weng Fengqi Song 《Science Bulletin》 SCIE EI CAS CSCD 2024年第17期2660-2664,共5页
Kagome lattice,characterized by two-dimensional honeycomb network of corner-sharing triangles[1],presents flat bands,Dirac cones,and van Hove singularities(VHSs),which have been theoretically predicted and experimenta... Kagome lattice,characterized by two-dimensional honeycomb network of corner-sharing triangles[1],presents flat bands,Dirac cones,and van Hove singularities(VHSs),which have been theoretically predicted and experimentally observed[2-4].When combined with spin-orbit coupling(SOC)and magnetism,novel properties have emerged.Although kagome materials vary,most of their strong interlayer interactions make the synthesized crystals not layered,and the properties deviating from the raw two-dimensional kagome lattices.These crystals are difficult to fabricate into thin devices and to tune the physical properties of the materials using gate voltage. 展开更多
关键词 network INTERLAYER structure
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