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Aligned Magnetic Domains in p- and n-Type Ferromagnetic Nanocrystals and in pn-Junction Nanodiodes

机译:p型和n型铁磁纳米晶体以及pn结纳米二极管中的对准磁畴

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We form pn- and np-junctions between monolayers of p- and n-type nanocrystals that exhibit current rectification in the nanodiodes when characterized with a scanning tunneling microscope (STM) tip. With the use of ferromagnetic nanocrystals, we study the effect of mutual alignment of magnetization vectors on current rectification in the junction between the two nanocrystals. We show that when the magnetization vectors of the p- and of the n-type nanocrystals are parallel to each other (and both facing toward the apex of the STM tip) tunneling current in both bias modes increases with correspondingly a higher rectification ratio. This is in contrast to the parameters of the nanodiodes in which magnetization vectors of the components are unaligned or randomized. To analyze the results, we record scanning tunneling spectroscopy of the monolayer of the components having magnetization vectors aligned or unaligned to locate their valence and conduction band edges and to determine the effect of the alignment on the band edges. Upon alignment of the magnetization vectors of the nanocrystals in a monolayer, the conduction band edge of the p-type and valence band edge of the n-type semiconductor shift towards the Fermi energy leading to a change in energy levels of the pn-junctions and accounting for the improved parameters of the nanodiodes.
机译:我们在p型和n型纳米晶体的单层之间形成pn结和np结,当使用扫描隧道显微镜(STM)尖端进行表征时,它们在纳米二极管中显示出电流整流。利用铁磁性纳米晶体,我们研究了磁化矢量相互对准对两个纳米晶体之间的结中电流整流的影响。我们表明,当p型和n型纳米晶体的磁化矢量彼此平行(并且都面向STM尖端的顶点)时,两种偏置模式下的隧穿电流均以相应的更高的整流比增加。这与纳米二极管的参数相反,在纳米二极管中,组件的磁化矢量未对齐或随机化。为了分析结果,我们记录了具有对齐或不对齐磁化矢量的组件的单层扫描隧道光谱,以定位其价键和导带边缘,并确定对齐对带边缘的影响。在单层中排列纳米晶体的磁化矢量时,p型的导带边缘和n型半导体的价带边缘向费米能移动,从而导致pn结和pn结的能级发生变化。考虑到纳米二极管的改进参数。

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