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Spin transport in disordered single-wall carbon nanotubes contacted to ferromagnetic leads

机译:与铁磁引线接触的无序单壁碳纳米管中的自旋输运

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摘要

Recent conductance measurements on multi-wall carbon nanotubes (CNTs) reveal an effective behavior similar to disordered single-wall CNTs. This is due to the fact that electric current flows essentially through the outermost shell and is strongly influenced by inhomogeneous electrostatic potential coming from the inner tubes. Here, we present theoretical studies of spin-dependent transport through disorder-free double-wall CNTs as well as single-wall CNTs with Anderson-type disorder. The CNTs are end-contacted to ferromagnetic electrodes modelled as fcc (111) surfaces. Our results shed additional light on the giant magnetoresistance effect in CNTs. Some reported results concern realistically long CNTs, up to several hundred nanometers.
机译:最近在多壁碳纳米管(CNT)上进行的电导测量显示出类似于无序单壁CNT的有效行为。这是由于这样的事实,电流基本上流过最外层外壳,并且受到来自内管的不均匀静电势的强烈影响。在这里,我们介绍了通过无障碍双壁CNT以及具有Anderson型障碍的单壁CNT自旋依赖性转运的理论研究。 CNT端部接触建模为fcc(111)表面的铁磁电极。我们的结果进一步揭示了碳纳米管中巨大的磁阻效应。一些报道的结果涉及到实际上长的纳米碳管,最高可达数百纳米。

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