A frustrated three-dimensional antiferromagnet: stacked J1–J2 layers

We study a frustrated 3D antiferromagnet of stacked J(1)-J(2) layers. The intermediate 'quantum spin liquid' phase, present in the 2D case, narrows with increasing interlayer coupling and vanishes at a triple point. Beyond this, there is a direct first-order transition from Néel to columna...

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Veröffentlicht in:Journal of physics. Condensed matter 2011-10, Vol.23 (41), p.416001-np
Hauptverfasser: Rojas, Onofre, Hamer, C J, Oitmaa, J
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container_title Journal of physics. Condensed matter
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creator Rojas, Onofre
Hamer, C J
Oitmaa, J
description We study a frustrated 3D antiferromagnet of stacked J(1)-J(2) layers. The intermediate 'quantum spin liquid' phase, present in the 2D case, narrows with increasing interlayer coupling and vanishes at a triple point. Beyond this, there is a direct first-order transition from Néel to columnar order. Possible applications to real materials are discussed.
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subjects Antiferromagnetism
Condensed matter
Condensed matter: electronic structure, electrical, magnetic, and optical properties
Exact sciences and technology
General theory and models of magnetic ordering
Interlayers
Joining
Magnetic properties and materials
Physics
Quantized spin models
Spin liquid
Three dimensional
Two dimensional
title A frustrated three-dimensional antiferromagnet: stacked J1–J2 layers
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