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Electronic Correlation and Pseudogap-Like Behavior of High-Temperature Superconductor La_(3)Ni_(2)O_(7)
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作者 Yidian Li Xian Du +13 位作者 Yantao Cao Cuiying Pei Mingxin Zhang Wenxuan Zhao Kaiyi Zhai Runzhe Xu Zhongkai Liu Zhiwei Li Jinkui Zhao Gang Li Yanpeng Qi Hanjie Guo Yulin Chen Lexian Yang 《Chinese Physics Letters》 SCIE EI CAS CSCD 2024年第8期82-93,共12页
High-temperature superconductivity(HTSC)remains one of the most challenging and fascinating mysteries in condensed matter physics.Recently,superconductivity with transition temperature exceeding liquid-nitrogen temper... High-temperature superconductivity(HTSC)remains one of the most challenging and fascinating mysteries in condensed matter physics.Recently,superconductivity with transition temperature exceeding liquid-nitrogen temperature is discovered in La_(3)Ni_(2)O_(7) at high pressure,which provides a new platform to explore the unconventional HTSC.In this work,using high-resolution angle-resolved photoemission spectroscopy and ab initio calculation,we systematically investigate the electronic structures of La_(3)Ni_(2)O_(7) at ambient pressure.Our experiments are in nice agreement with ab initio calculations after considering an orbital-dependent band renormalization effect.The strong electron correlation effect pushes a flat band of d_(z^(2))𝑧2 orbital component below the Fermi level(E_(F)),which is predicted to locate right at E_(F) under high pressure.Moreover,the d_(x^(2)−y^(2)) band shows pseudogap-like behavior with suppressed spectral weight and diminished quasiparticle peak near E_(F).Our findings provide important insights into the electronic structure of La_(3)Ni_(2)O_(7),which will shed light on understanding of the unconventional superconductivity in nickelates. 展开更多
关键词 effect SUPERCONDUCTIVITY ORBITAL
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拓扑半金属材料角分辨光电子能谱研究进展 被引量:2
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作者 邓韬 杨海峰 +4 位作者 张敬 李一苇 杨乐仙 柳仲楷 陈宇林 《物理学报》 SCIE EI CAS CSCD 北大核心 2019年第22期113-134,共22页
拓扑半金属材料是具有拓扑保护的能带交叠的一类无能隙拓扑量子材料,具备许多独特的物理性质,是目前量子材料研究的前沿领域.根据能带交叠的简并度和维度等不同信息,拓扑半金属材料可以分为拓扑狄拉克半金属、拓扑外尔半金属和拓扑节线... 拓扑半金属材料是具有拓扑保护的能带交叠的一类无能隙拓扑量子材料,具备许多独特的物理性质,是目前量子材料研究的前沿领域.根据能带交叠的简并度和维度等不同信息,拓扑半金属材料可以分为拓扑狄拉克半金属、拓扑外尔半金属和拓扑节线半金属等.具有高能量、动量分辨率的角分辨光电子能谱技术(ARPES)能够解析动量空间电子结构从而直接测量拓扑半金属中的拓扑电子态,是研究拓扑半金属材料的重要实验手段.本文系统回顾了利用ARPES技术测量的不同类型的典型拓扑半金属的电子结构特别是特征拓扑电子态,从而为拓扑半金属的物理起源、物性研究以及新奇拓扑半金属的探索提供了重要信息. 展开更多
关键词 拓扑半金属 电子结构 量子材料 角分辨光电子能谱
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迷时师度,觉时自度
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作者 柳仲楷 《语文世界(中旬刊)》 2014年第1期10-10,共1页
邱老师,你猜我有没有哭?没有。我没有哭,是因为心中满溢着愧疚和不安,您把我的人和我的文章说得太好。我并没有如此的才华,也真的没有如此的抱负,更没有如此坚毅刚强、百折不回的意志。您知道的,我的性格中充满着矛盾、
关键词 初中生 语文学习 阅读知识 课外阅读
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Electronic structure and spatial inhomogeneity of iron-based superconductor FeS 被引量:1
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作者 Chengwei Wang Meixiao Wang +12 位作者 Juan Jiang Haifeng Yang Lexian Yang Wujun Shi Xiaofang Lai Sung-Kwan Mo Alexei Barinov Binghai Yan Zhi Liu Fuqiang Huang Jinfeng Jia Zhongkai Liu Yulin Chen 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第4期110-115,共6页
Iron-based superconductor family FeX(X=S,Se,Te)has been one of the research foci in physics and material science due to their record-breaking superconducting temperature(FeSe film)and rich physical phenomena.Recently,... Iron-based superconductor family FeX(X=S,Se,Te)has been one of the research foci in physics and material science due to their record-breaking superconducting temperature(FeSe film)and rich physical phenomena.Recently,FeS,the least studied Fe X compound(due to the difficulty in synthesizing high quality macroscopic crystals)attracted much attention because of its puzzling superconducting pairing symmetry.In this work,combining scanning tunneling microscopy and angle resolved photoemission spectroscopy(ARPES)with sub-micron spatial resolution,we investigate the intrinsic electronic structures of superconducting FeS from individual single crystalline domains.Unlike FeTe or FeSe,FeS remains identical tetragonal structure from room temperature down to 5 K,and the band structures observed can be well reproduced by our ab-initio calculations.Remarkably,mixed with the 1×1 tetragonal metallic phase,we also observe the coexistence of √5×√5 reconstructed insulating phase in the crystal,which not only helps explain the unusual properties of FeS,but also demonstrates the importance of using spatially resolved experimental tools in the study of this compound. 展开更多
关键词 angle-resolved PHOTOEMISSION with spatially resolution scanning TUNNELING microscopy IRON-BASED SUPERCONDUCTOR electronic band structure
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Measurement of the bulk and surface bands in Dirac line-node semimetal ZrSiS
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作者 洪光昊 王成玮 +15 位作者 姜娟 陈成 崔胜涛 杨海峰 梁爱基 刘帅 吕洋洋 周健 陈延彬 姚淑华 卢明辉 陈延峰 王美晓 杨乐仙 柳仲楷 陈宇林 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第1期197-202,共6页
Dirac semimetals are materials in which the conduction and the valence bands have robust crossing points protected by topology or symmetry. Recently, a new type of Dirac semimetals, so called the Dirac line-node semim... Dirac semimetals are materials in which the conduction and the valence bands have robust crossing points protected by topology or symmetry. Recently, a new type of Dirac semimetals, so called the Dirac line-node semimetals (DLNSs), have attracted a lot of attention, as they host robust Dirac points along the one-dimensional (1D) lines in the Brillouin zone (BZ). In this work, using angle-resolved photoemission spectroscopy (ARPES) and first-principles calculations, we systematically investigated the electronic structures of non-symmorphic ZrSiS crystal where we clearly distinguished the surface states from the bulk states. The photon-energy-dependent measurements further prove the existence of Dirac line node along the X-R direction. Remarkably, by in situ surface potassium doping, we clearly observed the different evolutions of the bulk and surface electronic states while proving the robustness of the Dirac line node. Our studies not only reveal the complete electronic structures of ZrSiS, but also demonstrate the method manipulating the electronic structure of the compound. 展开更多
关键词 Dirac line-node semimetal ZrSiS angle-resolved photoemission spectroscopy (ARPES) bulk andsurface states
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Electronic structure and spin–orbit coupling in ternary transition metal chalcogenides Cu_(2)TlX_(2)(X = Se, Te)
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作者 Na Qin Xian Du +13 位作者 Yangyang Lv Lu Kang Zhongxu Yin Jingsong Zhou Xu Gu Qinqin Zhang Runzhe Xu Wenxuan Zhao Yidian Li Shuhua Yao Yanfeng Chen Zhongkai Liu Lexian Yang Yulin Chen 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第3期122-127,共6页
Ternary transition metal chalcogenides provide a rich platform to search and study intriguing electronic properties. Using angle-resolved photoemission spectroscopy and ab initio calculation, we investigate the electr... Ternary transition metal chalcogenides provide a rich platform to search and study intriguing electronic properties. Using angle-resolved photoemission spectroscopy and ab initio calculation, we investigate the electronic structure of Cu_(2)TlX_(2)(X = Se, Te), ternary transition metal chalcogenides with quasi-two-dimensional crystal structure. The band dispersions near the Fermi level are mainly contributed by the Te/Se p orbitals. According to our ab-initio calculation, the electronic structure changes from a semiconductor with indirect band gap in Cu_(2)TlSe_(2) to a semimetal in Cu_(2)TlTe_(2), suggesting a band-gap tunability with the composition of Se and Te. By comparing ARPES experimental data with the calculated results, we identify strong modulation of the band structure by spin–orbit coupling in the compounds. Our results provide a ternary platform to study and engineer the electronic properties of transition metal chalcogenides related to large spin–orbit coupling. 展开更多
关键词 transition metal chalcogenides spin–orbit coupling electronic structure angle-resolved photoemission spectroscopy(ARPES)
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Quantum Oscillations in Noncentrosymmetric Weyl Semimetal SmAlSi
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作者 Weizheng Cao Yunlong Su +11 位作者 Qi Wang Cuiying Pei Lingling Gao Yi Zhao Changhua Li Na Yu Jinghui Wang Zhongkai Liu Yulin Chen Gang Li Jun Li Yanpeng Qi 《Chinese Physics Letters》 SCIE EI CAS CSCD 2022年第4期67-73,共7页
As a new type of quantum state of matter hosting low energy relativistic quasiparticles,Weyl semimetals(WSMs)have attracted significant attention for scientific community and potential quantum device applications.In t... As a new type of quantum state of matter hosting low energy relativistic quasiparticles,Weyl semimetals(WSMs)have attracted significant attention for scientific community and potential quantum device applications.In this study,we present a comprehensive investigation of the structural,magnetic,and transport properties of noncentrosymmetric RAl Si(R=Sm,Ce),which have been predicted to be new magnetic WSM candidates.Both samples exhibit nonsaturated magnetoresistance,with about 900%and 80%for Sm Al Si and Ce Al Si,respectively,at temperature of 1.8 K and magnetic field of 9 T.The carrier densities of Sm Al Si and Ce Al Si exhibit remarkable change around magnetic transition temperatures,signifying that the electronic states are sensitive to the magnetic ordering of rare-earth elements.At low temperatures,Sm Al Si reveals prominent Shubnikov–de Haas oscillations associated with the nontrivial Berry phase.High-pressure experiments demonstrate that the magnetic order is robust and survival under high pressure.Our results would yield valuable insights into WSM physics and potentials in applications to next-generation spintronic devices in the RAl Si(R=Sm,Ce)family. 展开更多
关键词 SYMMETRIC QUANTUM nontrivial
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Electronic structure of correlated topological insulator candidate YbB6 studied by photoemission and quantum oscillation
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作者 T Zhang G Li +9 位作者 S C Sun N Qin L Kang S H Yao H M Weng S K Mo L Li Z K Liu L X Yang Y L Chen 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第1期70-75,共6页
Angle-resolved photoemission spectroscopy(ARPES)and torque magnetometry(TM)measurements have been carried out to study the electronic structures of a correlated topological insulator(TI)candidate Yb B6.We observed cle... Angle-resolved photoemission spectroscopy(ARPES)and torque magnetometry(TM)measurements have been carried out to study the electronic structures of a correlated topological insulator(TI)candidate Yb B6.We observed clear surface states on the[001]surface centered at theГ^- and М^- points of the surface Brillouin zone.Interestingly,the fermiology revealed by the quantum oscillation of TM measurements agrees excellently with ARPES measurements.Moreover,the band structures we observed suggest that the band inversion in Yb B6 happens between the Yb5 dand B2bands,instead of the Yb5dand Yb4fbands as suggested by previous theoretical investigation,which will help settle the heavy debate regarding the topological nature of samarium/ytterbium hexaborides. 展开更多
关键词 topological insulator electronic structure surface states
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中国基于同步辐射光源的ARPES线站简介 被引量:1
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作者 刘嘉宇 沈大伟 +3 位作者 柳仲楷 孙喆 黄耀波 乔山 《中国科学:物理学、力学、天文学》 CSCD 北大核心 2023年第6期2-19,共18页
角分辨光电子能谱(ARPES)凭借直接探测电子能量和动量的优势,在研究固体材料能带结构、费米面以及能隙等方面发挥着重要作用.近年来,通过追随国际领先水平,我国ARPES技术得到了飞速发展,其中与第一、二、三代同步辐射光源的结合更是帮... 角分辨光电子能谱(ARPES)凭借直接探测电子能量和动量的优势,在研究固体材料能带结构、费米面以及能隙等方面发挥着重要作用.近年来,通过追随国际领先水平,我国ARPES技术得到了飞速发展,其中与第一、二、三代同步辐射光源的结合更是帮助凝聚态物理和自旋电子学等研究方向实现了许多重大突破.本文从线站技术特点和主要成果两个角度简要介绍了目前中国主要的基于同步辐射ARPES光束线站:包括合肥光源角分辨光电子能谱线站,上海光源“梦之线”、BL03U、BL07U-Nano ARPES和BL07U-自旋分辨ARPES线站,同时还对基于未来合肥先进光源的新ARPES线站进行了展望.这些实验站将在新型量子材料探索与调控、微纳原型器件的研发等方面提供关键且不可替代的技术支撑. 展开更多
关键词 同步辐射 角分辨光电子能谱 量子材料
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Persistent surface states with diminishing gap in MnBi_(2)Te_(4)/Bi_(2)Te_(3) superlattice antiferromagnetic topological insulator 被引量:4
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作者 Lixuan Xu Yuanhao Mao +23 位作者 Hongyuan Wang Jiaheng Li Yujie Chen Yunyouyou Xia Yiwei Li Ding Pei Jing Zhang Huijun Zheng Kui Huang Chaofan Zhang Shengtao Cui Aiji Liang Wei Xia Hao Su Sungwon Jung Cephise Cacho Meixiao Wang Gang Li Yong Xu Yanfeng Guo Lexian Yang Zhongkai Liu Yulin Chen Mianheng Jiang 《Science Bulletin》 SCIE EI CSCD 2020年第24期2086-2093,M0005,共9页
Magnetic topological quantum materials(TQMs) provide a fertile ground for the emergence of fascinating topological magneto-electric effects. Recently, the discovery of intrinsic antiferromagnetic(AFM) topological insu... Magnetic topological quantum materials(TQMs) provide a fertile ground for the emergence of fascinating topological magneto-electric effects. Recently, the discovery of intrinsic antiferromagnetic(AFM) topological insulator MnBi_(2)Te_(4) that could realize quantized anomalous Hall effect and axion insulator phase ignited intensive study on this family of TQM compounds. Here, we investigated the AFM compound Mn Bi4 Te7 where Bi_(2)Te_(3) and MnBi_(2)Te_(4) layers alternate to form a superlattice. Using spatial-and angleresolved photoemission spectroscopy, we identified ubiquitous(albeit termination dependent) topological electronic structures from both Bi_(2)Te_(3) and MnBi_(2)Te_(4) terminations. Unexpectedly, while the bulk bands show strong temperature dependence correlated with the AFM transition, the topological surface states with a diminishing gap show negligible temperature dependence across the AFM transition.Together with the results of its sister compound MnBi_(2)Te_(4), we illustrate important aspects of electronic structures and the effect of magnetic ordering in this family of magnetic TQMs. 展开更多
关键词 Spatially resolved angle-resolved photoemission spectroscopy Electronic band structure Quantum anomalous Hall effect Magnetic topological insulator
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拓扑半金属的角分辨光电子能谱研究
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作者 高顺业 钱天 +2 位作者 杨乐仙 柳仲楷 陈宇林 《中国科学:物理学、力学、天文学》 CSCD 北大核心 2023年第6期93-114,共22页
拓扑半金属是一类新奇的量子材料,它存在受拓扑保护的无能隙体态能带交叉和特征表面态.根据能带交叉的维度和简并度,拓扑半金属可以简单分为:零维的四重简并狄拉克半金属、二重简并外尔半金属、三重/六重/八重简并点半金属,和高维度的节... 拓扑半金属是一类新奇的量子材料,它存在受拓扑保护的无能隙体态能带交叉和特征表面态.根据能带交叉的维度和简并度,拓扑半金属可以简单分为:零维的四重简并狄拉克半金属、二重简并外尔半金属、三重/六重/八重简并点半金属,和高维度的节线/节面半金属.近十年来,基于角分辨光电子能谱(ARPES)实验技术,人们可以直接测量拓扑半金属中的体态能带简并和特征表面态,清楚地揭示材料的拓扑本质.本文系统性回顾了使用ARPES研究各种类拓扑半金属的成果与进展,有助于理解其物理性质、拓扑起源以及探索更多新奇拓扑半金属. 展开更多
关键词 拓扑半金属 角分辨光电子能谱 电子结构 能带简并 费米弧
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Kagome晶格补偿型半金属Ni_(3)In_(2)S_(2)创纪录的高迁移率和极大磁电阻现象
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作者 房红伟 吕孟 +14 位作者 苏豪 袁健 李一苇 徐丽璇 刘帅 魏立阳 刘馨琪 杨海峰 姚岐 王美晓 郭艳峰 史武军 陈宇林 刘恩克 柳仲楷 《Science China Materials》 SCIE EI CAS CSCD 2023年第5期2032-2038,共7页
具有Kagome晶格的晶体有很多有趣的性质,包括受挫磁阻、电荷有序、拓扑态、超导和关联现象.为了在电子学和自旋电子学应用中实现高性能Kagome晶格化合物,需要对能带结构仔细调整.本文采用输运测量、角分辨光电子能谱和从头计算等方法研... 具有Kagome晶格的晶体有很多有趣的性质,包括受挫磁阻、电荷有序、拓扑态、超导和关联现象.为了在电子学和自旋电子学应用中实现高性能Kagome晶格化合物,需要对能带结构仔细调整.本文采用输运测量、角分辨光电子能谱和从头计算等方法研究了Kagome晶格晶体Ni_(3)In_(2)S_(2)的电子结构.输运测量表明,Ni_(3)In_(2)S_(2)是一种在Kagome晶格材料中具有创纪录的高载流子迁移率(空穴和电子迁移率分别约为8683和7356 cm^(2)V^(-1)S^(-1))和极大磁电阻(在2 K和13 T时为15,518%)的补偿半金属.Ni在Kagome晶格中的3d电子导致的非直接带隙、小的电子/空穴口袋和大的带宽的能带结构特征很好地解释了这些特殊的性质.这项工作表明,晶体场和掺杂是优化Kagome晶格晶体输运特性的关键因素.我们的工作为Kagome晶格半金属在电子学和自旋电子学方面的应用提供了材料基础和优化路径. 展开更多
关键词 kagome-lattice high mobility extreme magnetoresistance compensated semimetal electronic band structure
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Electronic origin of the enhanced thermoelectric efficiency of CuSe
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作者 Shucui Sun Yiwei Li +19 位作者 Yujie Chen Xiang Xu Lu Kang Jingsong Zhou Wei Xia Shuai Liu Meixiao Wang Juan Jiang Aiji Liang Ding Pei Kunpeng Zhao Pengfei Qiu Xun Shi Lidong Chen Yanfeng Guo Zhengguo Wang Yan Zhang Zhongkai Liu Lexian Yang Yulin Chen 《Science Bulletin》 SCIE EI CAS CSCD 2020年第22期1888-1893,M0003,共7页
Thermoelectric materials(TMs)can uniquely convert waste heat into electricity,which provides a potential solution for the global energy crisis that is increasingly severe.Bulk Cu2Se,with ionic conductivity of Cu ions,... Thermoelectric materials(TMs)can uniquely convert waste heat into electricity,which provides a potential solution for the global energy crisis that is increasingly severe.Bulk Cu2Se,with ionic conductivity of Cu ions,exhibits a significant enhancement of its thermoelectric figure of merit z T by a factor of^3 near its structural transition around 400 K.Here,we show a systematic study of the electronic structure of Cu2Se and its temperature evolution using high-resolution angle-resolved photoemission spectroscopy.Upon heating across the structural transition,the electronic states near the corner of the Brillouin zone gradually disappear,while the bands near the centre of Brillouin zone shift abruptly towards high binding energies and develop an energy gap.Interestingly,the observed band reconstruction well reproduces the temperature evolution of the Seebeck coefficient of Cu2 Se,providing an electronic origin for the drastic enhancement of the thermoelectric performance near 400 K.The current results not only bridge among structural phase transition,electronic structures and thermoelectric properties in a condensed matter system,but also provide valuable insights into the search and design of new generation of thermoelectric materials. 展开更多
关键词 Thermoelectric materials Cu2Se Angle-resolved photoemission spectroscopy Seebeck coefficient Band reconstruction
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