supported by the National Research Foundation(NRF)Korea(Grant No.2020R1A5A1019141,2021R1C1C2011276,RS-2023-00220471,RS-2023-00272090,RS-2024-00406755);D.Y.K.acknowledges the support from the National Natural Science Foundation of China(11774015)。
Hydrogen in metals is a significant research area with far-reaching implications,encompassing diverse fields such as hydrogen storage,metal-insulator transitions,and the recently emerging phenomenon of room-temperatur...
supported by National Natural Science Foundation of China(Grant Nos.12304095,12025407,11974400 and 12204513);Ministry of Science and Technology of the Peoples Republic of China(Grant Nos.2021YFA0718700 and 2021YFA1400201);Chinese Academy of Sciences(Grant Nos.XDB330301,CAS-WX2023SF-0101 and YSBR047);Guangdong Basic and Applied Basic Research Foundation(Grant Nos.2023A1515140188 and 2022A1515110404).
The AV_(3)Sb_(5)prototype kagomematerials have been demonstrated as a versatile platform for exploring exotic properties in condensed matter physics,including charge density waves,superconductivity,non-trivial electro...
supported by the National Key R&D Program of China(Grants No.2023YFA1607401,No.2022YFA1403800);the National Natural Science Foundation of China(Grants No.11974395,No.12188101);the Strategic Priority Research Program of Chinese Academy of Sciences(Grant No.XDB33000000);the Center for Materials Genome.
Based on first-principles calculations,we demonstrate that 1H/2H-phase transition metal dichalcogenides MX_(2)(M=Nb,Ta;X=S,Se,Te)are unconventional metals,which have an empty-site band of A01@1e elementary band repres...
We acknowledge support from the Cluster of Excellence“CUI:Advanced Imaging of Matter”-EXC 2056-project ID 390715994 and SFB-925“Lightinduced dynamics and control of correlated quantum systems”-project 170620586 of the Deutsche Forschungsgemeinschaft(DFG),and Grupos Consolidados(IT1453-22);EVB acknowledges funding from the European Union’s Horizon Europe research and innovation program under the Marie Skłodowska-Curie grant agreement No 101106809.
Understanding the origin of superconductivity in correlated two-dimensional materials is a key step in leveraging material engineering techniques for next-generation nanoscale devices.While it is widely accepted that ...
T.F.T.C acknowledges financial support from FCT-Fundação para a Ciência e Tecnologia,Portugal(projects UIDB/04564/2020 and 2022.09975.PTDC);the Laboratory for Advanced Computing at University of Coimbra for providing HPC resources that have contributed to the research results reported within this paper;funding from Horizon Europe MSCA Doctoral network grant n.101073486,EUSpecLab,funded by the European Union,and from the Keele Foundation;funding from the European Research Council(ERC)under the European Union’s Horizon 2020 research and innovation programme(Grant Agreement No.802533);acknowledge PRACE for awarding access to the EuroHPC supercomputer LUMI located in CSC’s data center in Kajaani,Finland through EuroHPC Joint Undertaking(EHPC-REG-2022R03-090).funding from the Spanish Ministry of Science and Innovation(Grant No.PID2022-142861NA-I00);the Department of Education,Universities and Research of the Basque Government and the University of the Basque Country(Grant No.IT1527-22).
The primary challenge in the field of high-temperature superconductivity in hydrides is to achieve a superconducting state at ambient pressure rather than the extreme pressures that have been required in experiments s...
supported by the National Key Research and Development Program of China(Grants No.2023YFA1406200,No.2022YFA1405500);National Natural Science Foundation of China(Grants No.12304021,No.52072188,No.12264038 and No.12222413);Zhejiang Provincial Natural Science Foundation of China(Grant No.LQ23A040004);Program for Science and Technology Innovation Team in Zhejiang(Grant No.2021R01004);Natural Science Foundation of Ningbo(Grant No.2022J091);Program for Changjiang Scholars and Innovative Research Team in University(Grant No.IRT_15R23);Natural Science Foundation of Inner Mongolia(Grant No.2022MS01013);Natural Science Foundation of Shanghai(Grants No.23ZR1482200 and 22ZR1473300).
The d-transition kagome metals provide a novel platform for exploring correlated superconducting state intertwined with charge ordering.However,the force of charge-density-wave(CDW)and superconductivity(SC)formation,a...
The recent discovery of nickel oxide superconductors have highlighted the importance of first-principles simulations forunderstanding the formation of the bound electrons at the core of superconductivity. Nevertheless...
The work at GMU(S.D.and I.I.M.)was supported by Office of Naval Research through grant N00014-20-1-2345;H.P.and E.R.M.acknowledge support from the National Science Foundation(NSF)under Grant No.DMR-2035518 and Grant No.OAC-2103991 for method development,superconductivity analysis,and code develop-ment.D.F.A;was supported by the U.S.Department of Energy,Office of Basic Energy Sciences,Division of Materials Sciences and Engineering,under Award No.DE-SC0021971;This work used the Extreme Science and Engineering Discovery Environment(XSEDE)70 which is supported by NSF Award No.ACI-1548562;Specifically,this work used Comet at the San Diego Supercomputer Center through allocation TG-DMR180071.
Ising superconductivity,observed in NbSe2 and similar materials,has generated tremendous interest.Recently,attention was called to the possible role that spin fluctuations(SF)play in this phenomenon,in addition to the...
the dCluster of the Graz University of Technology and the VSC3 of the Vienna University of Technology,and support through the FWF,Austrian Science Fund,Project P30269-N36(Superhydra);L.B.acknowledges funding through Progetto Ateneo Sapienza 2017-18-19 and computational Resources from CINECA,proj.Hi-TSEPH.S.D.C.acknowledges computational Resources from CINECA,proj.IsC90-HTS-TECH_C,and the dCluster of the Graz University of Technology.
Motivated by the recent claim of hot superconductivity with critical temperatures up to 550 K in La + x hydrides,we investigate the high-pressure phase diagram of compounds that may have formed in the experiment,using...
T.F.T.C.acknowledges the financial support from the CFisUC through the project UIDB/04564/2020 and the Laboratory for Advanced Computing at the University of Coimbra for providing HPC resources that have contributed to the research results reported within this paper.
We present a comprehensive theoretical study of conventional superconductivity in cubic antiperovskites materials with composition XYZ_(3) where X and Z are metals,and Y is H,B,C,N,O,and P.Our starting point are elect...