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$\mu$SR evidence for the U(1) quantum spin liquid ground state in the triangular antiferromagnet YbMgGaO$_4$

Strongly Correlated Electrons 2016-08-30 v1

Abstract

Muon spin relaxation and rotation (μ\muSR) experiments on single crystals of the structurally perfect triangular antiferromagnet YbMgGaO4_4 indicate the absence of both static long-range magnetic order and spin freezing down to 0.048 K in zero field. Below 0.4 K, the μ+\mu^{+} spin relaxation rates, which are proportional to the dynamic correlation function of the Yb3+^{3+} spins,exhibit temperature-independent plateaus. Same behavior is revealed by temperature-independent local susceptibilities extracted from the Knight shifts of the μ+\mu^{+} spin rotation frequencies under a transverse field of 20 Oe. All these μ\muSR results unequivocally support the formation of a gapless U(1) quantum spin liquid ground state in the triangular antiferromagnet YbMgGaO4_4.

Keywords

Cite

@article{arxiv.1607.03298,
  title  = {$\mu$SR evidence for the U(1) quantum spin liquid ground state in the triangular antiferromagnet YbMgGaO$_4$},
  author = {Yuesheng Li and Devashibhai Adroja and Pabitra K. Biswas and Peter J. Baker and Qian Zhang and Juanjuan Liu and Alexander A. Tsirlin and Philipp Gegenwart and Qingming Zhang},
  journal= {arXiv preprint arXiv:1607.03298},
  year   = {2016}
}

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