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Collective impurity effects in the Heisenberg triangular antiferromagnet
We theoretically investigate the Heisenberg antiferromagnet on a triangular lattice doped with nonmagnetic impurities. Two nontrivial effects resulting from collective impurity behavior are predicted. The first one is related to presence of uncompensated magnetic moments localized near vacancies as...
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Published in: | Journal of physics. Conference series 2015-03, Vol.592 (1), p.12112 |
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description | We theoretically investigate the Heisenberg antiferromagnet on a triangular lattice doped with nonmagnetic impurities. Two nontrivial effects resulting from collective impurity behavior are predicted. The first one is related to presence of uncompensated magnetic moments localized near vacancies as revealed by the low-temperature Curie tail in the magnetic susceptibility. These moments exhibit an anomalous growth with the impurity concentration, which we attribute to the clustering mechanism. In an external magnetic field, impurities lead to an even more peculiar phenomenon lifting the classical ground-state degeneracy in favor of the conical state. We analytically demonstrate that vacancies spontaneously generate a positive biquadratic exchange, which is responsible for the above degeneracy lifting. |
doi_str_mv | 10.1088/1742-6596/592/1/012112 |
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subjects | Antiferromagnetism Clustering Condensed Matter Curie temperature Impurities Impurity effects Lattice vacancies Low temperature Magnetic moments Magnetic permeability Magnetism Physics Statistical Mechanics Strongly Correlated Electrons |
title | Collective impurity effects in the Heisenberg triangular antiferromagnet |
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