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CuGeO₃中场致量子孤子晶格的激发

Excitations of the field-induced quantum soliton lattice in CuGeO(3).

作者信息

Enderle M, Rønnow H M, McMorrow D F, Regnault L P, Dhalenne G, Revcholevschi A, Vorderwisch P, Schneider H, Smeibidl P, Meissner M

机构信息

Technische Physik, Universität des Saarlandes, 66123 Saarbrücken, Germany.

出版信息

Phys Rev Lett. 2001 Oct 22;87(17):177203. doi: 10.1103/PhysRevLett.87.177203. Epub 2001 Oct 4.

Abstract

The incommensurate magnetic soliton lattice in the high-field phase of a spin-Peierls system results from quantum fluctuations. We have used neutron scattering techniques to study CuGeO(3), allowing us to obtain the first complete characterization of the excitations of the soliton lattice. Three distinct excitation branches are observed, all of which are gapped. The two highest energy modes have minimum gaps at the commensurate wave vector and correspond to the creation or annihilation of soliton pairs. The third mode is incommensurate and is discussed in relation to theoretical predictions.

摘要

自旋-派尔斯系统高场相中的非公度磁孤子晶格源于量子涨落。我们利用中子散射技术研究了CuGeO(3),从而首次完整地表征了孤子晶格的激发。观察到三个不同的激发分支,它们都有能隙。能量最高的两个模式在公度波矢处有最小能隙,对应于孤子对的产生或湮灭。第三个模式是非公度的,并根据理论预测进行了讨论。

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