《Chinese Physics B》

作品数:20688被引量:13716H指数:22
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《Chinese Physics B》
主办单位:中国物理学会;中国科学院物理研究所
最新期次:2025年4期更多>>
发文主题:BASED_ONQUANTUMEFFECTANPROPERTIES_OF更多>>
发文领域:理学电子电信机械工程一般工业技术更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划国家教育部博士点基金中国博士后科学基金更多>>
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Multiscale structural complexity analysis of neuronal activity in suprachiasmatic nucleus:Insights from tetrodotoxin-induced disruptions
《Chinese Physics B》2025年第4期605-613,共9页Ping Wang Changgui Gu Huijie Yang 
Project supported by the National Natural Science Foundation of China(Grant Nos.12275179,11875042,and 12150410309);the Natural Science Foundation of Shanghai(Grant No.21ZR1443900).
The suprachiasmatic nucleus in the hypothalamus is the master circadian clock in mammals,coordinating physiological processes with the 24-hour day–night cycle.Comprising various cell types,the suprachiasmatic nucleus...
关键词:suprachiasmatic nucleus circadian rhythm COMPLEXITY synchrony multiscale structural complexity 
A bionic robotic fish with a dielectric elastomer
《Chinese Physics B》2025年第4期615-623,共9页Chenghong Zhang 
Project supported by Joint Open Fund of Guizhou Provincial Department of Education(Grant No.[2022]439);the Academic New Seedling Cultivation and Free Exploration and Innovation of Guizhou Provincial Science and Technology Department(Grant No.[2023]11).
Dielectric elastomer actuators(DEAs)are promising enabling devices which can be used in a wide range of robots,artificial muscles,and microfluidics.They are characterized by high actuating strain,low cost and noise,an...
关键词:dielectric elastomer actuator(DEA) soft robot fish motion analysis 
Corrigendum to“Elastic properties of Cu–6wt%Ag alloy wires for pulsed magnets investigated by ultrasonic techniques”
《Chinese Physics B》2025年第4期625-625,共1页Ziyu Li Tianyi Gu Wenqi Wei Yang Yuan Zhuo Wang Kangjian Luo Yupeng Pan Jianfeng Xie Shaozhe Zhang Tao Peng Lin Liu Qi Chen Xiaotao Han Yongkang Luo Liang Li 
Figure 3 in the paper[Chin.Phys.B 34020701(2025)]contains an axis labeling error.The revised figure is provided.This modification does not affect the result presented in the paper.
关键词:high-field magnet Cu-Ag alloy ultrasonic techniques elastic constants 
Quantum anomalous Hall effect in twisted bilayer graphene
《Chinese Physics B》2025年第4期2-10,共9页Wen-Xiao Wang Yi-Wen Liu Lin He 
supported by the Science Research Project of Hebei Education Department(Grant No.BJK2024168);the National Natural Science Foundation of China(Grant No.11904076);the Natural Science Foundation of Hebei(Grant No.A2019205313);Science Foundation of Hebei Normal University(Grant No.L2024J02).
Recent advancements in two-dimensional van der Waals moir´e materials have unveiled the captivating landscape of moir´e physics.In twisted bilayer graphene(TBG)at‘magic angles’,strong electronic correlations give ...
关键词:quantum anomalous Hall effect magic-angle twisted bilayer graphene moirésuperlattices 
Fabrication of two-dimensional van der Waals moiré superlattices
《Chinese Physics B》2025年第4期12-27,共16页Zihao Wan Chao Wang Hang Zheng Wenna Tang Zihao Fu Weilin Liu Zhenjia Zhou Jun Li Guowen Yuan Libo Gao 
Project supported by the National Natural Science Foundation of China(Grant Nos.52425203 and 12104218);the the Natural Science Foundation of Jiangsu Province(Grant Nos.BK20240008 and BK20241252);the China National Postdoctoral Program for Innovative Talents(Grant No.BX2021120);the Xiaomi Foundation,the Postdoctoral Fellowship Program of CPSF(Grant No.GZC20231093);Jiangsu Funding Program for Excellent Postdoctoral Talent(Grant No.2023ZB553).
Two-dimensional(2D)van der Waals(vdW)moiré superlattices have attracted significant attention due to their novel physical properties and quantum phenomena.The realization of these fascinating properties,however heavi...
关键词:2D materials moirésuperlattices fabrication techniques chemical vapor deposition(CVD) 
Angle-resolved photoemission spectroscopy study on transition-metal kagome materials
《Chinese Physics B》2025年第4期29-45,共17页Jiangang Yang Jianwei Huang Lin Zhao X.J.Zhou 
Project supported by the National Natural Science Foundation of China(Grant Nos.12488201,12074411,12374066,12374154,and 12494593);the National Key Research and Development Program of China(Grant No.2022YFA1403900,2021YFA1401800,2022YFA1604200,2023YFA1406002,2024YFA1408301,and 2024YFA1400026);the Strategic Priority Research Program(B)of the Chinese Academy of Sciences(Grant Nos.XDB25000000 and XDB33000000);the Innovation Program for Quantum Science and Technology(Grant No.2021ZD0301800);the Youth Innovation Promotion Association of CAS(Grant No.Y2021006);Synergetic Extreme Condition User Facility(SECUF).
Angle-resolved photoemission spectroscopy(ARPES)has become a cornerstone technique for elucidating the electronic structures of emergent quantum materials.Among these,kagome materials—distinguished by their two-dimen...
关键词:kagome materials angle-resolved photoemission spectroscopy electron correlation electronic topology 
High-throughput discovery of kagome materials in transition metal oxide monolayers
《Chinese Physics B》2025年第4期47-53,共7页Renhong Wang Cong Wang Ruixuan Li Deping Guo Jiaqi Dai Canbo Zong Weihan Zhang Wei Ji 
financial support from the National Key Research&Development Program of China(Grant No.2023YFA1406500);the National Natural Science Foundation of China(Grant Nos.12104504,52461160327 and 92477205);the Fundamental Research Funds for the Central Universities,and the Research Funds of Renmin University of China[Grant Nos.22XNKJ30(W.J.)and 24XNKJ17(C.W.)]。
Kagome materials are known for hosting exotic quantum states,including quantum spin liquids,charge density waves,and unconventional superconductivity.The search for kagome monolayers is driven by their ability to exhi...
关键词:monolayers two-dimensional kagome materials transition metal oxides high-throughput calculations 
Scanning tunneling microscopy study on symmetry breaking of charge density wave in FeGe
《Chinese Physics B》2025年第4期55-61,共7页Jiakang Zhang Ziyuan Chen Xueliang Wu Mingzhe Li Yuanji Li Ruotong Yin Jiashuo Gong Shiyuan Wang Aifeng Wang Dong-Lai Feng Ya-Jun Yan 
Project supported by the National Natural Science Foundation of China(Grant Nos.12374140,12494593,11790312,12004056,11774060,and 92065201);the National Key R&D Program of China(Grant No.2023YFA1406304);the Innovation Program for Quantum Science and Technology(Grant No.2021ZD0302803);the Fundamental Research Funds for the Central Universities of China(Grant Nos.2022CDJXY-002 and WK9990000103);the New Cornerstone Science Foundation.
The complex symmetry breaking states in AV3Sb5 family have attracted extreme research attention,but controversy still exists,especially in the question of time reversal symmetry breaking of the charge density wave(CDW...
关键词:symmetry breaking kagome magnet charge density wave 
Electronic structure and disorder effect of La_(3)Ni_(2)O_(7)superconductor
《Chinese Physics B》2025年第4期63-69,共7页Yuxin Wang Yi Zhang Kun Jiang 
Project supported by the National Natural Science Foundation of China(Grant Nos.NSFC-12494590,NSFC-12174428,and NSFC-12274279);the New Cornerstone Investigator Program;the Chinese Academy of Sciences Project for Young Scientists in Basic Research(Grant No.2022YSBR-048).
Determining the electronic structure of La_(3)Ni_(2)O_(7)is an essential step towards uncovering its superconducting mechanism.It is widely believed that the bilayer apical oxygens play an important role in the bilaye...
关键词:electronic structure oxygen vacancies disorder dynamical cluster approximation bilayer superconducting nickelate 
Strain rate effects on pressure-induced amorphous-to-amorphous transformation in fused silica
《Chinese Physics B》2025年第4期71-76,共6页Wenhao Song Bo Gan Dongxiao Liu Jie Wu Martin T.Dove Youjun Zhang 
supported by the National Natural Science Foundation of China(Grant Nos.42422201,12175211,and 12350710177);the Sichuan Science and Technology Program(Grant No.2023NSFSC1910).
Fused silica(SiO_(2)glass),a key amorphous component of Earth’s silicate minerals,undergoes coordination and phase transformations under high pressure.Although extensive studies have been conducted,discrepancies betw...
关键词:fused silica shock compression phase transition kinetics strain rate 
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