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Fabrication of surface magnetic nanoclusters using low energy ion implantation and electron beam annealing

机译:使用低能离子注入和电子束退火制备表面磁性纳米团簇

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摘要

Magnetic nanoclusters have novel applications as magnetic sensors, spintronic and biomedical devices, as well as applications in more traditional materials such as high-density magnetic storage media and high performance permanent magnets. We describe a new synthesis protocol which combines the advantages of ion implantation and electron beam annealing (EBA) to produce surface iron nanoclusters. We compare the structure, composition and magnetic properties of iron nanoclusters fabricated by low dose 15 keV Fe implantation into SiO_2 followed by 1000 °C EBA or furnace annealing. Atomic force microscopy (AFM) and high resolution transmission electron microscopy (HRTEM) images together with superconducting quantum interference device (SQUID) magnetometry measurements show that only EBA leads to the rapid formation of surface crystalline Fe spherical nanoclusters, showing magnetic moments per Fe atom comparable to that of bulk bcc Fe and superparamagnetic properties. We propose a fabrication mechanism which includes e-beam enhanced desorption of SiO_2. This method has potential for fabricating nanoscale magnetic sensors integrated in microelectronic devices.
机译:磁性纳米团簇具有新颖的应用,如磁性传感器,自旋电子和生物医学设备,以及在更传统的材料中的应用,例如高密度磁存储介质和高性能永磁体。我们描述了一种新的合成协议,该协议结合了离子注入和电子束退火(EBA)的优势来生产表面铁纳米簇。我们比较了通过将低剂量15 keV Fe注入SiO_2并随后进行1000°C EBA或炉内退火制成的铁纳米团簇的结构,组成和磁性能。原子力显微镜(AFM)和高分辨率透射电子显微镜(HRTEM)图像以及超导量子干涉仪(SQUID)磁力测量结果表明,只有EBA才能快速形成表面结晶的Fe球形纳米团簇,显示每个Fe原子的磁矩可比相较于块状bcc铁和超顺磁性。我们提出了一种制造机制,其中包括电子束增强的SiO_2解吸。该方法具有制造集成在微电子器件中的纳米级磁传感器的潜力。

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