Magnetic susceptibility and short-range order in iron pnictides: anisotropic [J.sub.1]-[J.sub.2] heisenberg model
A spin-rotation-invariant Green-function theory for the dynamic spin susceptibility in the anisotropic non-frustrated [J.sup.1]-[J.sub.2] model for the iron pnictides A[Fe.sub.2][As.sub.2] (A = Ca, Sr, Ba) is presented. The two-spin correlation functions, the spin-excitation spectrum, and the stagge...
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Veröffentlicht in: | The European physical journal. B, Condensed matter physics Condensed matter physics, 2014-05, Vol.87 (5) |
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creator | Vladimirov, Artem A Ihle, Dieter Plakida, Nikolay M |
description | A spin-rotation-invariant Green-function theory for the dynamic spin susceptibility in the anisotropic non-frustrated [J.sup.1]-[J.sub.2] model for the iron pnictides A[Fe.sub.2][As.sub.2] (A = Ca, Sr, Ba) is presented. The two-spin correlation functions, the spin-excitation spectrum, and the staggered magnetization are calculated self-consistently as functions of temperature and spin. The temperature dependence of the magnetic (uniform static) susceptibility, in particular the linear increase with T in a wide temperature region that is in good quantitative agreement with experiments, is ascribed to a strong in-plane antiferromagnetic short-range order. The values of the Neel temperature resulting from the localized spin model with realistic out-of-plane couplings are found to be much higher than the measured values. From this an extension of the model by including itinerant degrees of freedom is suggested. |
doi_str_mv | 10.1140/epjb/e2014-50152-y |
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The two-spin correlation functions, the spin-excitation spectrum, and the staggered magnetization are calculated self-consistently as functions of temperature and spin. The temperature dependence of the magnetic (uniform static) susceptibility, in particular the linear increase with T in a wide temperature region that is in good quantitative agreement with experiments, is ascribed to a strong in-plane antiferromagnetic short-range order. The values of the Neel temperature resulting from the localized spin model with realistic out-of-plane couplings are found to be much higher than the measured values. 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B, Condensed matter physics</title><description>A spin-rotation-invariant Green-function theory for the dynamic spin susceptibility in the anisotropic non-frustrated [J.sup.1]-[J.sub.2] model for the iron pnictides A[Fe.sub.2][As.sub.2] (A = Ca, Sr, Ba) is presented. The two-spin correlation functions, the spin-excitation spectrum, and the staggered magnetization are calculated self-consistently as functions of temperature and spin. The temperature dependence of the magnetic (uniform static) susceptibility, in particular the linear increase with T in a wide temperature region that is in good quantitative agreement with experiments, is ascribed to a strong in-plane antiferromagnetic short-range order. The values of the Neel temperature resulting from the localized spin model with realistic out-of-plane couplings are found to be much higher than the measured values. 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B, Condensed matter physics</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Vladimirov, Artem A</au><au>Ihle, Dieter</au><au>Plakida, Nikolay M</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Magnetic susceptibility and short-range order in iron pnictides: anisotropic [J.sub.1]-[J.sub.2] heisenberg model</atitle><jtitle>The European physical journal. B, Condensed matter physics</jtitle><date>2014-05-01</date><risdate>2014</risdate><volume>87</volume><issue>5</issue><issn>1434-6028</issn><eissn>1434-6036</eissn><abstract>A spin-rotation-invariant Green-function theory for the dynamic spin susceptibility in the anisotropic non-frustrated [J.sup.1]-[J.sub.2] model for the iron pnictides A[Fe.sub.2][As.sub.2] (A = Ca, Sr, Ba) is presented. The two-spin correlation functions, the spin-excitation spectrum, and the staggered magnetization are calculated self-consistently as functions of temperature and spin. The temperature dependence of the magnetic (uniform static) susceptibility, in particular the linear increase with T in a wide temperature region that is in good quantitative agreement with experiments, is ascribed to a strong in-plane antiferromagnetic short-range order. The values of the Neel temperature resulting from the localized spin model with realistic out-of-plane couplings are found to be much higher than the measured values. From this an extension of the model by including itinerant degrees of freedom is suggested.</abstract><pub>Springer</pub><doi>10.1140/epjb/e2014-50152-y</doi></addata></record> |
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title | Magnetic susceptibility and short-range order in iron pnictides: anisotropic [J.sub.1]-[J.sub.2] heisenberg model |
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