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Experimental signatures of a three-dimensional quantum spin liquid in effective spin-1/2 Ce2Zr2O7 pyrochlore

Authors
Gao, BinChen, TongTam, David W.Huang, Chien-LungSasmal, KalyanAdroja, Devashibhai T.Ye, FengCao, HuiboSala, GabrieleStone, Matthew B.Baines, ChristopherVerezhak, Joel A. T.Hu, HaoyuChung, Jae-HoXu, XianghanCheong, Sang-WookNallaiyan, ManivannanSpagna, StefanoMaple, M. BrianNevidomskyy, Andriy H.Morosan, EmiliaChen, GangDai, Pengcheng
Issue Date
10월-2019
Publisher
NATURE PUBLISHING GROUP
Citation
NATURE PHYSICS, v.15, no.10, pp.1052 - +
Indexed
SCIE
SCOPUS
Journal Title
NATURE PHYSICS
Volume
15
Number
10
Start Page
1052
End Page
+
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/62724
DOI
10.1038/s41567-019-0577-6
ISSN
1745-2473
Abstract
A quantum spin liquid is a state of matter where unpaired electrons' spins, although entangled, do not show magnetic order even at the zero temperature. The realization of a quantum spin liquid is a long-sought goal in condensed-matter physics. Although neutron scattering experiments on the two-dimensional spin-1/2 kagome lattice ZnCu3(OD)(6)Cl-2 and triangular lattice YbMgGaO4 have found evidence for the hallmark of a quantum spin liquid at very low temperature (a continuum of magnetic excitations), the presence of magnetic and non-magnetic site chemical disorder complicates the interpretation of the data. Recently, the three-dimensional Ce3+ pyrochlore lattice Ce2Sn2O7 has been suggested as a clean, effective spin-1/2 quantum spin liquid candidate, but evidence of a spin excitation continuum is still missing. Here, we use thermodynamic, muon spin relaxation and neutron scattering experiments on single crystals of Ce2Zr2O7, a compound isostructural to Ce2Sn2O7, to demonstrate the absence of magnetic ordering and the presence of a spin excitation continuum at 35 mK. With no evidence of oxygen deficiency and magnetic/non-magnetic ion disorder seen by neutron diffraction and diffuse scattering measurements, Ce2Zr2O7 may be a three-dimensional pyrochlore lattice quantum spin liquid material with minimum magnetic and non-magnetic chemical disorder.
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