首页> 外文期刊>Journal of Physics. Condensed Matter >Paramagnetic spin splitting of the conductances for tunnel junctions between partially gapped metals with charge density waves and normal metals or ferromagnets
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Paramagnetic spin splitting of the conductances for tunnel junctions between partially gapped metals with charge density waves and normal metals or ferromagnets

机译:带有电荷密度波的部分能隙金属与正常金属或铁磁体之间的隧道结电导的顺磁自旋分裂

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摘要

We consider tunnelling between a metal partially gapped by charge density waves (CDWM) and an ordinary metal (M) or a ferromagnet (FM) separated by an insulator (1) in an external magnetic field H. Zeeman paramagnetic splitting is assumed to dominate in the CDWM over orbital magnetic effects. The quasiparticle tunnel current J and relevant differential conductance G are calculated as functions of the bias voltage V. The peaks of G(V), originating from the electron density of states singularities near the charge density wave gap edges, were shown to be split in the magnetic field, each peak having a predominant spin polarization. This effect is analogous to the H-induced splitting of G(V) peaks obtained by Tedrow and Meservey for junctions between normal metals and superconductors (S). Thus, it is possible to electrically measure the polarization of current carriers in such a set-up, although the behaviours of G(V) in the two cases are substantially different. The use of M-I-CDWM junctions instead of M-I-S ones has certain advantages. The absence of the Meissner effect, which weakens the constraints upon the junction geometry and electrode materials, comprises the main benefit. The other advantage is the larger energy range of the charge density wave gaps in comparison to that for superconductors' gaps, so that larger Hs may be applied.
机译:我们考虑在外部磁场H中在部分被电荷密度波(CDWM)隔开的金属与由绝缘体(1)隔开的普通金属(M)或铁磁体(FM)之间的隧穿。假定塞曼顺磁分裂占主导地位CDWM超过轨道磁效应。计算准粒子隧穿电流J和相关的差动电导G作为偏置电压V的函数。G(V)的峰源自于电荷密度波隙边缘附近的状态奇异点的电子密度,被分裂为在磁场中,每个峰都有一个主要的自旋极化。这种效应类似于由Tedrow和Meservey获得的H诱导的G(V)峰分裂,该峰用于普通金属和超导体(S)之间的连接。因此,尽管在两种情况下G(V)的行为基本上不同,但在这种设置下可以电测量电流载流子的极化。使用M-I-CDWM结代替M-I-S结具有一定优势。缺少迈斯纳效应会削弱对结几何形状和电极材料的约束,这是其主要优点。另一个优点是,与超导体间隙相比,电荷密度波间隙的能量范围更大,因此可以应用更大的Hs。

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