Spin-Wave Modes in a Heisenberg Linear Chain of Classical Spins
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概要
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The second, fourth and sixth moments of the time-dependent correlation functions are calculated rigorously for a classical Heisenberg linear chain with the nearest-neighbour interactions. With use of these moments the spectral-line shape of the time-dependent correlation functions is reproduced by a Gaussian assumption at the second step in a continued fraction expansion. At the low temperatures, well-defined spin-wave peaks are obtained. From this result it may be considered that there exist propagating modes in the highly developed local order instead of the long-range order that is required in the simple spin-wave theory. At finite temperatures the calculated spectrum is compared with the inelastic neutron scattering data of (CD_3)_<4>NMnCl_3 (TMMC) and there can be found a good agreement. The conspicuous discrepancy is found only in the line-width and intensity at the lowest temperature. At the high-temperature limit we reproduce a spectrum which is very similar to the rigorous solution calculated by Carboni and Richards for a finite chain of quantum spin (S=1/2).
- 理論物理学刊行会の論文
- 1972-10-25
著者
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Mashiyama Hiroyuki
Department Of Physics Biology And Informatics Faculty Of Science Yamaguchi University
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Tomita Hiroyuki
Department Of Cardiac Surgery Kyushu University Hospital
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Tomita Hiroyuki
Department Of Applied Physics Faculty Of Engineering Hokkaido University
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TOMITA Hiroyuki
Department of Physics, Faculty of Science, Kyoto University
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MASHIYAMA Hiroyuki
Department of Physics, Faculty of Science, Kyoto University
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