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Dynamic fingerprint of fractionalized excitations in single-crystalline Cu$_3$Zn(OH)$_6$FBr

Authors :
Fu, Ying
Lin, Miao-Ling
Wang, Le
Liu, Qiye
Huang, Lianglong
Jiang, Wenrui
Hao, Zhanyang
Liu, Cai
Zhang, Hu
Shi, Xingqiang
Zhang, Jun
Dai, Junfeng
Yu, Dapeng
Ye, Fei
Lee, Patrick A.
Tan, Ping-Heng
Mei, Jia-Wei
Publication Year :
2020

Abstract

Quantum spin liquid (QSL) represents a new class of condensed matter states characterized by the long-range many-body entanglement of topological orders. The most prominent feature of the elusive QSL state is the existence of fractionalized spin excitations. Subject to the strong quantum fluctuations, the spin-1/2 antiferromagnetic system on a kagome lattice is the promising candidate for hosting a QSL ground state, but the structurally ideal realization is rare. Here, we report Raman scattering on the single crystalline Cu$_3$Zn(OH)$_6$FBr, and confirm that the ideal kagome structure remains down to low temperatures without any lattice distortion by the angle-resolved polarized Raman responses and second-harmonic-generation measurements. Furthermore, at low temperatures the Raman scattering reveals a continuum of the spin excitations in Cu$_3$Zn(OH)$_6$FBr, in contrast to the sharp magnon peak in the ordered kagome antiferromagnet EuCu$_3$(OH)$_6$Cl$_3$. Such magnetic Raman continuum, in particular, the substantial low-energy one-pair spinon excitation serves as strong evidence for fractionalized spin excitations in Cu$_3$Zn(OH)$_6$FBr.<br />Comment: 4+13 figures

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2010.07900
Document Type :
Working Paper
Full Text :
https://doi.org/10.1038/s41467-021-23381-9