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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Spin-dependent electronic structure of transition-metal atomic chains adsorbed on single-wall carbon nanotubes
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Spin-dependent electronic structure of transition-metal atomic chains adsorbed on single-wall carbon nanotubes

机译:吸附在单壁碳纳米管上的过渡金属原子链的自旋依赖性电子结构

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We present a systematic study of the electronic and magnetic properties of transition-metal (TM) atomic chains adsorbed on the zigzag single-wall carbon nanotubes (SWNTs). We considered the adsorption on the external and internal wall of SWNT and examined the effect of the TM coverage and geometry on the binding energy and the spin polarization at the Fermi level. All those adsorbed chains studied have ferromagnetic ground state, but only their specific types and geometries demonstrated high spin polarization near the Fermi level. Their magnetic moment and binding energy in the ground state display interesting variation with the number of d electrons of the TM atom. We also show that specific chains of transition-metal atoms adsorbed on a SWNT can lead to semiconducting properties for the minority spin bands, but semimetallic for the majority spin bands. Spin polarization is maintained even when the underlying SWNT is subjected to high radial strain. Spin-dependent electronic structure becomes discretized when TM atoms are adsorbed on finite segments of SWNTs. Once coupled with nonmagnetic metal electrodes, these magnetic needles or nanomag-nets can perform as spin-dependent resonant tunneling devices. The electronic and magnetic properties of these nanomagnets can be engineered depending on the type and decoration of adsorbed TM atom as well as the size and symmetry of the tube. Our study is performed by using first-principles pseudopotential plane wave method within spin-polarized density functional method.
机译:我们目前对之字形单壁碳纳米管(SWNTs)上吸附的过渡金属(TM)原子链的电子和磁性进行系统的研究。我们考虑了SWNT外壁和内壁的吸附,并研究了TM覆盖率和几何形状对费米能级上的结合能和自旋极化的影响。所有研究的吸附链均具有铁磁性基态,但只有其特定类型和几何形状在费米能级附近显示出高自旋极化。它们在基态的磁矩和结合能随TM原子的d个电子数显示出有趣的变化。我们还表明,吸附在单壁碳纳米管上的过渡金属原子的特定链可导致少数自旋带具有半导体性质,而多数自旋带具有半金属性质。即使下面的SWNT承受高的径向应变,自旋极化仍然保持。当TM原子吸附在SWNT的有限片段上时,自旋相关的电子结构变得离散。一旦与非磁性金属电极耦合,这些磁针或纳米磁铁就可以充当自旋相关的共振隧穿设备。可以根据所吸附的TM原子的类型和修饰以及管的尺寸和对称性来设计这些纳米磁体的电子和磁性。我们的研究是通过在自旋极化密度泛函方法内使用第一性原理pseudo势平面波方法进行的。

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