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Huang Group
  • 首頁
  • 研究
  • 成員
  • 研究設備
  • 研究成果
  • 照片集
  • 聯絡我們
  • More
    • 首頁
    • 研究
    • 成員
    • 研究設備
    • 研究成果
    • 照片集
    • 聯絡我們

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Selected publications

  1. Liu et al.,"Complex magnetic properties of the double perovskite Hg2MnTeO6 probed by thermodynamic measurements and neutron diffraction", Phy. Rev. B 112, 104436 (2025)

  2. Klemm et al.,"Vacancy-induced suppression of charge density wave order and its impact on magnetic order in kagome antiferromagnet FeGe", Nature Commun. 16, 3313 (2025)

  3. Hsu et al., "Magnetic properties of binary alloys Ni1-xMox and Ni1-yCuy close to critical concentrations", Physica B 695, 416524 (2024)

  4. Cheng et al., "Physical properties and electronic structure of the two-gap superconductor V2Ga5", Phys. Rev. Res. 6, 033253 (2024)

  5. Lin et al., "Non-Fermi-liquid behavior in a ferromagnetic heavy fermion system CeTi1-xVxGe3", Phys. Rev. Res. 6, 033130 (2024)

  6. Peraca et al., "Quantum simulation of an extended Dicke model with a magnetic solid", Commun. Mat. 5, 42, (2024)

  7. M. Stavinoha et al.,"Conductive surface states and Kondo exhaustion in insulating YbIr3Si7", Phys. Rev. B 109, 035112 (2024)

  8. C.-C. Chang et al., "Electrical transport and electronic properties of multiband metallic PdSn2", Phys. Rev. B 108, 205133 (2023)

  9. Bin Gao et al., "Disorder-induced excitation continuum in a spin-1/2 cobaltate on a triangular lattice", Phys. Rev. B 108, 024431 (2023)

  10. Bin Gao et al., "Diffusive excitonic bands from frustrated triangular sublattice in a singlet-ground-state system", Nat. Commun. 14, 2051 (2023)

  11. J.-M. Moya et al., "Field-induced quantum critical point in the itinerant antiferromagnet Ti3Cu4", Commun. Phys. 5, 136 (2022)

  12. R.-Z. Lin and C.-L. Huang, "Hyperscaling analysis of a disorder-induced ferromagnetic quantum critical point in Ni1-xRhx with x = 0.375", Phys. Rev. B 105, 024429 (2022)

  13. C.-L. Huang* et al., “Quantum critical point in the itinerant ferromagnet Ni1-xRhx”, Phys. Rev. Lett. 124, 117203 (2020)

  14. B. Gao et al., “Experimental signatures of a three-dimensional quantum spin liquid on effective spin-1/2 Ce2Zr2O7 pyrochlore”, Nat. Phys. 15, 1052 (2019)

  15. Binod K. Rai et al., "Low-carrier density and fragile magnetism in a Kondo lattice system", Phys. Rev. B 99, 085120 (2019)

  16. Binod K. Rai et al., "Anomalous metamagnetism in the low carrier density Kondo lattice YbRh3Si7", Phy. Rev. X 8, 041047 (2018) 

  17. J. M. Santiago et al., “Itinerant magnetic metals”, J. Phys.: Cond. Matter 29, 373002 (2017)

  18. L. Jiao et al., “Superconducting gap structure of FeSe”, Scientific Reports 7, 44024 (2017)

  19. S. Lucas et al., “Entropy evolution in the magnetic phases of partially frustrated CePdAl”, Phys. Rev. Lett. 118, 107204 (2017)

  20. C.-L. Huang* et al., “Anomalous quantum criticality in an itinerant ferromagnet”, Nat. Commun. 6, 8188 (2015)

  21. C.-L. Huang* et al., “Low-temperature magnetic, thermodynamic, and transport properties of antiferromagnetic CeAuSn single crystals”, Phys. Rev. B 91, 144413 (2015)

  22. C.-L. Huang* et al., “Low-temperature properties of CeAu2Ge2 single crystals from Au-Ge and Sn flux”, Phys. Rev. B 86, 214401 (2012) 

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