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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Angular studies of the magnetoresistance in the density wave state of the quasi-two-dimensional purple bronze KMo6O17
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Angular studies of the magnetoresistance in the density wave state of the quasi-two-dimensional purple bronze KMo6O17

机译:准二维紫铜青铜KMo6O17在密度波状态下磁阻的角度研究

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摘要

The purple molybdenum bronze KMo6O17 is a quasi-two-dimensional compound which shows a Peierls transition towards a commensurate metallic charge density wave (CDW) state. High magnetic field measurements have revealed several transitions at low temperature and have provided an unusual phase diagram "temperature-magnetic field". Angular studies of the interlayer magnetoresistance are now reported. The results suggest that the orbital coupling of the magnetic field to the CDW is the most likely mechanism for the field induced transitions. The angular dependence of the magnetoresistance is discussed on the basis of a warped quasi-cylindrical Fermi surface and provides information on the geometry of the Fermi surface in the low temperature density wave state.
机译:紫色钼青铜KMo6O17是准二维化合物,显示Peierls向相称的金属电荷密度波(CDW)状态过渡。高磁场的测量揭示了在低温下的几种转变,并提供了一种不寻常的相位图“温度-磁场”。现在报道了层间磁阻的角度研究。结果表明,磁场与CDW的轨道耦合是磁场诱发跃迁的最可能机制。在翘曲的准圆柱费米表面的基础上讨论了磁阻的角度依赖性,并提供了在低温密度波状态下费米表面几何形状的信息。

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