Magnetic ordering and dynamics in the XY pyrochlore antiferromagnet: a muon-spin relaxation study of Er2Ti2O7 and Er2Sn2O7

Spin dynamics in Er2 and 2Sn2O7 have been probed by means of muonspin relaxation (μ+SR) in the temperature range 0.02 ≤ T ≤ 300 K. Both compounds are thought to constitute experimental realizations of the highly frustrated XY antiferromagnet on the pyrochlore lattice, for which theory predicts fluct...

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Main Authors: Lago, J, Lancaster, T, Blundell, S, Bramwell, S, Pratt, F, Shirai, M, Baines, C
Format: Journal article
Language:English
Published: 2005
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author Lago, J
Lancaster, T
Blundell, S
Bramwell, S
Pratt, F
Shirai, M
Baines, C
author_facet Lago, J
Lancaster, T
Blundell, S
Bramwell, S
Pratt, F
Shirai, M
Baines, C
author_sort Lago, J
collection OXFORD
description Spin dynamics in Er2 and 2Sn2O7 have been probed by means of muonspin relaxation (μ+SR) in the temperature range 0.02 ≤ T ≤ 300 K. Both compounds are thought to constitute experimental realizations of the highly frustrated XY antiferromagnet on the pyrochlore lattice, for which theory predicts fluctuation-induced magnetic order. Our results for Er2Ti2O7 are consistent with a transition into an ordered state at TN ∼ 1.1 K, in agreement with previous neutron measurements. Below this temperature, the muon relaxation rate λ(T) remains large (∼2 MHz) and temperature independent, in contrast to the behaviour in conventional magnets. The thermal evolution of λ(T) for Er2Sn2O7 is somewhat similar to that of the Ti material. However, the depolarization curves remain exponential over the entire temperature range, suggesting a dense distribution of rapidly fluctuating magnetic moments, and, thus, are compatible with the absence of long-range order at least for T > 0.02 K.
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spelling oxford-uuid:28b80fdc-544e-4853-b6a5-7fa764a14ea52022-03-26T12:14:36ZMagnetic ordering and dynamics in the XY pyrochlore antiferromagnet: a muon-spin relaxation study of Er2Ti2O7 and Er2Sn2O7Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:28b80fdc-544e-4853-b6a5-7fa764a14ea5EnglishSymplectic Elements at Oxford2005Lago, JLancaster, TBlundell, SBramwell, SPratt, FShirai, MBaines, CSpin dynamics in Er2 and 2Sn2O7 have been probed by means of muonspin relaxation (μ+SR) in the temperature range 0.02 ≤ T ≤ 300 K. Both compounds are thought to constitute experimental realizations of the highly frustrated XY antiferromagnet on the pyrochlore lattice, for which theory predicts fluctuation-induced magnetic order. Our results for Er2Ti2O7 are consistent with a transition into an ordered state at TN ∼ 1.1 K, in agreement with previous neutron measurements. Below this temperature, the muon relaxation rate λ(T) remains large (∼2 MHz) and temperature independent, in contrast to the behaviour in conventional magnets. The thermal evolution of λ(T) for Er2Sn2O7 is somewhat similar to that of the Ti material. However, the depolarization curves remain exponential over the entire temperature range, suggesting a dense distribution of rapidly fluctuating magnetic moments, and, thus, are compatible with the absence of long-range order at least for T > 0.02 K.
spellingShingle Lago, J
Lancaster, T
Blundell, S
Bramwell, S
Pratt, F
Shirai, M
Baines, C
Magnetic ordering and dynamics in the XY pyrochlore antiferromagnet: a muon-spin relaxation study of Er2Ti2O7 and Er2Sn2O7
title Magnetic ordering and dynamics in the XY pyrochlore antiferromagnet: a muon-spin relaxation study of Er2Ti2O7 and Er2Sn2O7
title_full Magnetic ordering and dynamics in the XY pyrochlore antiferromagnet: a muon-spin relaxation study of Er2Ti2O7 and Er2Sn2O7
title_fullStr Magnetic ordering and dynamics in the XY pyrochlore antiferromagnet: a muon-spin relaxation study of Er2Ti2O7 and Er2Sn2O7
title_full_unstemmed Magnetic ordering and dynamics in the XY pyrochlore antiferromagnet: a muon-spin relaxation study of Er2Ti2O7 and Er2Sn2O7
title_short Magnetic ordering and dynamics in the XY pyrochlore antiferromagnet: a muon-spin relaxation study of Er2Ti2O7 and Er2Sn2O7
title_sort magnetic ordering and dynamics in the xy pyrochlore antiferromagnet a muon spin relaxation study of er2ti2o7 and er2sn2o7
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