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Long spin lifetime and large barrier polarisation in single electron transport through a CoFe nanoparticle

机译:通过CoFe纳米粒子的单电子传输中的长自旋寿命和大势垒极化

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摘要

We have investigated single electron spin transport in individual single crystal bcc Co30Fe70 nanoparticles using scanning tunnelling microscopy with a standard tungsten tip. Particles were deposited using a gas-aggregation nanoparticle source and individually addressed as asymmetric double tunnel junctions with both a vacuum and a MgO tunnel barrier. Spectroscopy measurements on the particles show a Coulomb staircase that is correlated with the measured particle size. Field emission tunnelling effects are incorporated into standard single electron theory to model the data. This formalism allows spin-dependent parameters to be determined even though the tip is not spin-polarised. The barrier spin polarisation is very high, in excess of 84%. By variation of the resistance, several orders of magnitude of the system timescale are probed, enabling us to determine the spin relaxation time on the island. It is found to be close to 10 μs, a value much longer than previously reported.
机译:我们使用标准钨尖端的扫描隧道显微镜研究了单个单晶bcc Co30Fe70纳米颗粒中的单电子自旋传输。使用气体聚集纳米粒子源沉积粒子,并分别处理为具有真空和MgO隧道势垒的不对称双隧道结。粒子的光谱测量结果显示库仑阶梯与测量的粒径相关。场发射隧穿效应被纳入标准单电子理论中以对数据建模。即使尖端没有自旋极化,这种形式主义也可以确定自旋相关参数。势垒自旋极化非常高,超过84%。通过改变电阻,可以探测到系统时间尺度的几个数量级,从而使我们能够确定孤岛上的自旋弛豫时间。发现它接近10μs,比以前报道的值长得多。

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