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作为维度交叉的魔角效应和角磁阻振荡

Magic angle effects and angular magnetoresistance oscillations as dimensional crossovers.

作者信息

Lebed A G, Bagmet N N, Naughton M J

机构信息

Department of Physics, Boston College, Chestnut Hill, Massachusetts 02467, USA.

出版信息

Phys Rev Lett. 2004 Oct 8;93(15):157006. doi: 10.1103/PhysRevLett.93.157006. Epub 2004 Oct 6.

Abstract

Interference effects between velocity and density of states, which occur as electrons move along open orbits in the extended Brillouin zone in anisotropic conductors, result in a change of wave functions' dimensionality at magic angle (MA) directions of a magnetic field. In particular, these 1D-->2D dimensional crossovers result in the appearance of sharp minima in a resistivity component rho perpendicular (H,alpha), perpendicular to conducting layers. This explains the main qualitative features of MA and angular magnetoresistance oscillations' phenomena observed due to the existence of quasi-one-dimensional sheets of Fermi surface in (TMTSF)2X, (DMET-TSeF)2X, and kappa-(ET)2Cu(NCS)(2) conductors.

摘要

速度与态密度之间的干涉效应,当电子在各向异性导体的扩展布里渊区中沿着开放轨道移动时会出现,导致波函数在磁场的魔角(MA)方向上维度发生变化。特别是,这些一维到二维的维度交叉导致垂直于导电层的电阻率分量ρ⊥(H,α)出现尖锐的极小值。这解释了在(TMTSF)2X、(DMET - TSeF)2X和κ-(ET)2Cu(NCS)2导体中,由于费米面的准一维薄片的存在而观察到的MA和角磁阻振荡现象的主要定性特征。

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