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Gapless spin liquid ground state in the S = 1/2 vanadium oxyfluoride kagome antiferromagnet [NH4]2[C7H14N][V7O6F18]

Authors :
L, Clark
J C, Orain
F, Bert
M A, De Vries
F H, Aidoudi
R E, Morris
P, Lightfoot
J S, Lord
M T F, Telling
P, Bonville
J P, Attfield
P, Mendels
A, Harrison
Source :
Physical review letters. 110(20)
Publication Year :
2013

Abstract

The vanadium oxyfluoride [NH(4)](2)[C(7)H(14)N][V(7)O(6)F(18)] (DQVOF) is a geometrically frustrated magnetic bilayer material. The structure consists of S = 1/2 kagome planes of V(4+) d(1) ions with S = 1 V(3+) d(2) ions located between the kagome layers. Muon spin relaxation measurements demonstrate the absence of spin freezing down to 40 mK despite an energy scale of 60 K for antiferromagnetic exchange interactions. From magnetization and heat capacity measurements we conclude that the S = 1 spins of the interplane V(3+) ions are weakly coupled to the kagome layers, such that DQVOF can be viewed as an experimental model for S = 1/2 kagome physics, and that it displays a gapless spin liquid ground state.

Details

ISSN :
10797114
Volume :
110
Issue :
20
Database :
OpenAIRE
Journal :
Physical review letters
Accession number :
edsair.pmid..........b4a16981ac9980f04dec111ed47e1f4a