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Optical manipulation of the topological phase in ZrTe_(5) revealed by time-and angle-resolved photoemission
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作者 黄超之 徐骋洋 +8 位作者 朱锋锋 段绍峰 刘见喆 顾凌霄 王石崇 刘浩然 钱冬 罗卫东 张文涛 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第1期170-175,共6页
High-resolution time-and angle-resolved photoemission measurements were conducted on the topological insulator ZrTe_(5).With strong femtosecond photoexcitation,a possible ultrafast phase transition from a weak to a st... High-resolution time-and angle-resolved photoemission measurements were conducted on the topological insulator ZrTe_(5).With strong femtosecond photoexcitation,a possible ultrafast phase transition from a weak to a strong topological insulating phase was experimentally realized by recovering the energy gap inversion in a time scale that was shorter than 0.15 ps.This photoinduced transient strong topological phase can last longer than 2 ps at the highest excitation fluence studied,and it cannot be attributed to the photoinduced heating of electrons or modification of the conduction band filling.Additionally,the measured unoccupied electronic states are consistent with the first-principles calculation based on experimental crystal lattice constants,which favor a strong topological insulating phase.These findings provide new insights into the longstanding controversy about the strong and weak topological properties in ZrTe_(5),and they suggest that many-body effects including electron–electron interactions must be taken into account to understand the equilibrium weak topological insulating phase in ZrTe_(5). 展开更多
关键词 time-and angle-resolved photoemission spectroscopy electronic structure topological insulator
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Sedimentary evolution and control factors of the Rizhao Canyons in the Zhongjiannan Basin, western South China Sea
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作者 Meijing Sun Yongjian Yao +5 位作者 weidong luo Jie Liu Xiaosan Hu Jiao Zhou Dong Ju Ziying Xu 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2023年第9期16-26,共11页
Submarine canyon is an important channel for long-distance sediment transport, and an important part of deepwater sedimentary system. The large-scale Rizhao Canyons have been discovered for the first time in 2015 in t... Submarine canyon is an important channel for long-distance sediment transport, and an important part of deepwater sedimentary system. The large-scale Rizhao Canyons have been discovered for the first time in 2015 in the continental slope area of the western South China Sea. Based on the interpretation and analysis of multi-beam bathymetry and two-dimensional multi-channel seismic data, the geology of the canyons has however not been studied yet. In this paper, the morphology and distribution characteristics of the canyon are carefully described,the sedimentary filling structure and its evolution process of the canyon are analyzed, and then its controlling factors are discussed. The results show that Rizhao Canyons group is a large slope restricted canyon group composed of one east-west west main and nine branch canyons extending to the south. The canyon was formed from the late Miocene to the Quaternary. The east-west main canyon is located in the transition zone between the northern terrace and the southern Zhongjiannan Slope, and it is mainly formed by the scouring and erosion of the material source from the west, approximately along the slope direction. Its development and evolution is mainly controlled by sediment supply and topographic conditions, the development of 9 branch canyons is mainly controlled by gravity flow and collapse from the east-west main canyon. This understanding result is a supplement to the study of “source-channel–sink” sedimentary system in the west of the South China Sea, and has important guiding significance for the study of marine geological hazards. 展开更多
关键词 CANYON GEOMORPHOLOGY sedimentary evolution control factors Zhongjiannan Basin western South China Sea
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Fano Resonance Enabled Infrared Nano-Imaging of Local Strain in Bilayer Graphene 被引量:1
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作者 杜靖 吕博赛 +10 位作者 单琬斐 陈佳俊 周先亮 谢京旭 邓奥林 胡成 梁齐 谢贵柏 李小军 罗卫东 史志文 《Chinese Physics Letters》 SCIE CAS CSCD 2021年第5期60-66,共7页
Detection of local strain at the nanometer scale with high sensitivity remains challenging.Here we report near-field infrared nano-imaging of local strains in bilayer graphene by probing strain-induced shifts of phono... Detection of local strain at the nanometer scale with high sensitivity remains challenging.Here we report near-field infrared nano-imaging of local strains in bilayer graphene by probing strain-induced shifts of phonon frequency.As a non-polar crystal,intrinsic bilayer graphene possesses little infrared response at its transverse optical phonon frequency.The reported optical detection of local strain is enabled by applying a vertical electrical field that breaks the symmetry of the two graphene layers and introduces finite electrical dipole moment to graphene phonon.The activated phonon further interacts with continuum electronic transitions,and generates a strong Fano resonance.The resulted Fano resonance features a very sharp near-field infrared scattering peak,which leads to an extraordinary sensitivity of-0.002%for the strain detection.Our results demonstrate the first nano-scale near-field Fano resonance,provide a new way to probe local strains with high sensitivity in non-polar crystals,and open exciting possibilities for studying strain-induced rich phenomena. 展开更多
关键词 RED image Fano Resonance Enabled Infrared Nano-Imaging of Local Strain in Bilayer Graphene
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Determination of the surface states from the ultrafast electronic states in a thermoelectric material
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作者 吴桐尧 王洪远 +6 位作者 杨媛媛 段绍峰 黄超之 唐天威 郭艳峰 罗卫东 张文涛 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第2期149-153,共5页
We reveal the electronic structure in Yb Cd_(2)Sb_(2),a thermoelectric material,by angle-resolved photoemission spectroscopy(ARPES)and time-resolved ARPES(tr ARPES).Specifically,three bulk bands at the vicinity of the... We reveal the electronic structure in Yb Cd_(2)Sb_(2),a thermoelectric material,by angle-resolved photoemission spectroscopy(ARPES)and time-resolved ARPES(tr ARPES).Specifically,three bulk bands at the vicinity of the Fermi level are evidenced near the Brillouin zone center,consistent with the density functional theory(DFT)calculation.It is interesting that the spin-unpolarized bulk bands respond unexpectedly to right-and left-handed circularly polarized probe.In addition,a hole band of surface states,which is not sensitive to the polarization of the probe beam and is not expected from the DFT calculation,is identified.We find that the non-equilibrium quasiparticle recovery rate is much smaller in the surface states than that of the bulk states.Our results demonstrate that the surface states can be distinguished from the bulk ones from a view of time scale in the nonequilibrium physics. 展开更多
关键词 electronic band structure YbCd_(2)Sb_(2) surface states time-and angle-resolved photoemission spectroscopy
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Magnetic Interactions and Band Gaps of the(CrO_(2))_(2)/(MgH_(2))_(n) Superlattices
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作者 Wanfei Shan Jiangtao Du weidong luo 《Chinese Physics Letters》 SCIE EI CAS CSCD 2022年第11期57-62,共6页
Lattice superlattices constructed with different materials such as ferromagnets and insulators at atomic scale provide an ideal platform for exploring many emergent physical phenomena.In the present work,a new type of... Lattice superlattices constructed with different materials such as ferromagnets and insulators at atomic scale provide an ideal platform for exploring many emergent physical phenomena.In the present work,a new type of superlattices composed of ferromagnetic half-metal CrO_(2),with a thickness of two atomic layers,together with insulating MgH_(2) are constructed.Systematic theoretical studies on the(CrO_(2))_(2)/(MgH_(2))_(n) (n=2,3,4,5,6)superlattices are carried out based on first-principles density-functional theory calculations.These superlattices are ferromagnetic semiconductors with similar intra-layer magnetic exchange couplings between Cr ions.As the thickness of the MgH_(2) layer increases,the magnetic exchange interaction between inter-layer Cr ions shows oscillating decaying behavior,while the energy band gaps show a small increase.The understanding of magnetic couplings in these superlattices provides a pathway for constructing new ferromagnetic semiconductors. 展开更多
关键词 FERROMAGNETIC COUPLING LAYER
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Bi2MoO6修饰提升g-C3N4光催化降解罗丹明B性能 被引量:1
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作者 皮明雨 骆卫东 +5 位作者 韦金豆 郭利娟 何思琪 陈世建 崔玉亭 张丁可 《中国科学:化学》 CAS CSCD 北大核心 2020年第3期406-413,共8页
本文通过水热法合成球状Bi2MoO6,采用热处理法复合Bi2MoO6和g-C3N4,制备出不同质量比例的g-C3N4/Bi2MoO6复合型光催化剂.利用X射线衍射、扫描电子显微镜、紫外-可见分光光度计、光致发光光谱仪等技术对所制备的光催化剂进行基本物性表征... 本文通过水热法合成球状Bi2MoO6,采用热处理法复合Bi2MoO6和g-C3N4,制备出不同质量比例的g-C3N4/Bi2MoO6复合型光催化剂.利用X射线衍射、扫描电子显微镜、紫外-可见分光光度计、光致发光光谱仪等技术对所制备的光催化剂进行基本物性表征,分析了样品的微观结构、尺寸形貌和光学性质.g-C3N4与Bi2MoO6之间理想匹配的能带结构促进了光生载流子转移,进而提升光生电子和空穴的分离率,达到提高光催化活性的目的.g-C3N4/Bi2MoO6复合材料在可见光下展现出对罗丹明B高效的降解活性,其中Bi2MoO6与g-C3N4质量比为10%时展示出最佳的光催化降解性能,其降解速率分别为纯g-C3N4和Bi2MoO6的6.5和3.3倍. 展开更多
关键词 g-C3N4/Bi2MoO6 复合材料 光催化降解
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