author_facet Zhang, N.
Guo, Y. Y.
Lin, L.
Dong, S.
Yan, Z. B.
Li, X. G.
Liu, J.-M.
Zhang, N.
Guo, Y. Y.
Lin, L.
Dong, S.
Yan, Z. B.
Li, X. G.
Liu, J.-M.
author Zhang, N.
Guo, Y. Y.
Lin, L.
Dong, S.
Yan, Z. B.
Li, X. G.
Liu, J.-M.
spellingShingle Zhang, N.
Guo, Y. Y.
Lin, L.
Dong, S.
Yan, Z. B.
Li, X. G.
Liu, J.-M.
Applied Physics Letters
Ho substitution suppresses collinear Dy spin order and enhances polarization in DyMnO3
Physics and Astronomy (miscellaneous)
author_sort zhang, n.
spelling Zhang, N. Guo, Y. Y. Lin, L. Dong, S. Yan, Z. B. Li, X. G. Liu, J.-M. 0003-6951 1077-3118 AIP Publishing Physics and Astronomy (miscellaneous) http://dx.doi.org/10.1063/1.3636399 <jats:p>The multiferroic behaviors of Dy1−xHoxMnO3 are investigated in order to reveal the effects of Ho-substitution on the independent collinear Dy spin order and ferroelectric polarization at low temperature. It is demonstrated that a partial Ho-substitution of Dy ions significantly suppresses the independent Dy spin order at low temperature on one hand, and maintains the R-Mn spin coupling on the other hand, thus leading to a remarkable enhancement of the polarization at low temperature.</jats:p> Ho substitution suppresses collinear Dy spin order and enhances polarization in DyMnO3 Applied Physics Letters
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title Ho substitution suppresses collinear Dy spin order and enhances polarization in DyMnO3
title_unstemmed Ho substitution suppresses collinear Dy spin order and enhances polarization in DyMnO3
title_full Ho substitution suppresses collinear Dy spin order and enhances polarization in DyMnO3
title_fullStr Ho substitution suppresses collinear Dy spin order and enhances polarization in DyMnO3
title_full_unstemmed Ho substitution suppresses collinear Dy spin order and enhances polarization in DyMnO3
title_short Ho substitution suppresses collinear Dy spin order and enhances polarization in DyMnO3
title_sort ho substitution suppresses collinear dy spin order and enhances polarization in dymno3
topic Physics and Astronomy (miscellaneous)
url http://dx.doi.org/10.1063/1.3636399
publishDate 2011
physical
description <jats:p>The multiferroic behaviors of Dy1−xHoxMnO3 are investigated in order to reveal the effects of Ho-substitution on the independent collinear Dy spin order and ferroelectric polarization at low temperature. It is demonstrated that a partial Ho-substitution of Dy ions significantly suppresses the independent Dy spin order at low temperature on one hand, and maintains the R-Mn spin coupling on the other hand, thus leading to a remarkable enhancement of the polarization at low temperature.</jats:p>
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author Zhang, N., Guo, Y. Y., Lin, L., Dong, S., Yan, Z. B., Li, X. G., Liu, J.-M.
author_facet Zhang, N., Guo, Y. Y., Lin, L., Dong, S., Yan, Z. B., Li, X. G., Liu, J.-M., Zhang, N., Guo, Y. Y., Lin, L., Dong, S., Yan, Z. B., Li, X. G., Liu, J.-M.
author_sort zhang, n.
container_issue 10
container_start_page 0
container_title Applied Physics Letters
container_volume 99
description <jats:p>The multiferroic behaviors of Dy1−xHoxMnO3 are investigated in order to reveal the effects of Ho-substitution on the independent collinear Dy spin order and ferroelectric polarization at low temperature. It is demonstrated that a partial Ho-substitution of Dy ions significantly suppresses the independent Dy spin order at low temperature on one hand, and maintains the R-Mn spin coupling on the other hand, thus leading to a remarkable enhancement of the polarization at low temperature.</jats:p>
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imprint AIP Publishing, 2011
imprint_str_mv AIP Publishing, 2011
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publishDate 2011
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record_format ai
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series Applied Physics Letters
source_id 49
spelling Zhang, N. Guo, Y. Y. Lin, L. Dong, S. Yan, Z. B. Li, X. G. Liu, J.-M. 0003-6951 1077-3118 AIP Publishing Physics and Astronomy (miscellaneous) http://dx.doi.org/10.1063/1.3636399 <jats:p>The multiferroic behaviors of Dy1−xHoxMnO3 are investigated in order to reveal the effects of Ho-substitution on the independent collinear Dy spin order and ferroelectric polarization at low temperature. It is demonstrated that a partial Ho-substitution of Dy ions significantly suppresses the independent Dy spin order at low temperature on one hand, and maintains the R-Mn spin coupling on the other hand, thus leading to a remarkable enhancement of the polarization at low temperature.</jats:p> Ho substitution suppresses collinear Dy spin order and enhances polarization in DyMnO3 Applied Physics Letters
spellingShingle Zhang, N., Guo, Y. Y., Lin, L., Dong, S., Yan, Z. B., Li, X. G., Liu, J.-M., Applied Physics Letters, Ho substitution suppresses collinear Dy spin order and enhances polarization in DyMnO3, Physics and Astronomy (miscellaneous)
title Ho substitution suppresses collinear Dy spin order and enhances polarization in DyMnO3
title_full Ho substitution suppresses collinear Dy spin order and enhances polarization in DyMnO3
title_fullStr Ho substitution suppresses collinear Dy spin order and enhances polarization in DyMnO3
title_full_unstemmed Ho substitution suppresses collinear Dy spin order and enhances polarization in DyMnO3
title_short Ho substitution suppresses collinear Dy spin order and enhances polarization in DyMnO3
title_sort ho substitution suppresses collinear dy spin order and enhances polarization in dymno3
title_unstemmed Ho substitution suppresses collinear Dy spin order and enhances polarization in DyMnO3
topic Physics and Astronomy (miscellaneous)
url http://dx.doi.org/10.1063/1.3636399