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Coexistence of magnetic order and persistent spin dynamics in a quantum kagome antiferromagnet with no intersite mixing

  • A. Zorko*
  • , M. Pregelj
  • , M. Klanjšek
  • , M. Gomilšek
  • , Z. Jagličić
  • , J. S. Lord
  • , J. A.T. Verezhak
  • , T. Shang
  • , W. Sun
  • , J. X. Mi
  • *此作品的通讯作者
  • J. Stefan Institute
  • Durham University
  • University of Ljubljana
  • Institute of Mathematics, Physics and Mechanics Ljubljana
  • STFC Rutherford Appleton Laboratory
  • Paul Scherrer Institute
  • Xiamen University

科研成果: 期刊稿件文章同行评审

摘要

One of the key questions concerning frustrated lattices that has lately emerged is the role of disorder in inducing spin-liquid-like properties. In this context, the quantum kagome antiferromagnet YCu3(OH)6Cl3, which has been recently reported as the first geometrically perfect realization of the kagome lattice with negligible magnetic/nonmagnetic intersite mixing and a possible quantum-spin-liquid ground state, is of particular interest. However, contrary to previous conjectures, here we show clear evidence of bulk magnetic ordering in this compound below TN=15 K by combining bulk magnetization and heat capacity measurements, and local-probe muon spin relaxation measurements. The magnetic ordering in this material is rather unconventional in several respects. First, a crossover regime where the ordered state coexists with the paramagnetic state extends down to TN/3 and, second, the fluctuation crossover is shifted far below TN. Moreover, persistent spin dynamics that is observed at temperatures as low as T/TN=1/300 could be a sign of emergent excitations of correlated spin loops or, alternatively, a sign of fragmentation of each magnetic moment into an ordered and a fluctuating part.

源语言英语
文章编号214441
期刊Physical Review B
99
21
DOI
出版状态已出版 - 27 6月 2019
已对外发布

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