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Structural and magnetic changes induced by electron and ion irradiation on HOPG

机译:电子和离子照射对Hopg诱导的结构和磁性变化

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In recent decades, many studies reported magnetism in carbon-based materials. This phenomenon was attributed to structural defects within the sample. Many authors showed an increase of magnetization in HOPG (Highly Oriented Pyrolytic Graphite) induced by proton bombardment, meanwhile the effect of electronic irradiation on the magnetic behavior has been unattended till now. The aim of this work is to contribute to the understanding of defect-induced effects on the structural and magnetic properties of graphite. For this purpose, we performed experiments of irradiation on HOPG with two different impinging projectiles -electrons and ions. The structural characterization of the bombarded samples was carried out by Raman spectroscopy. On both irradiated samples we identify the D band, associated to the disorder induced by bombardment, with significantly distinct contributions depending on the projectile type. In order to interpret Raman results, a theoretical model proposed by Ferrari et al. was used to classify the generated defects. The relationship between the induced damage and magnetization was evaluated by magnetic characterization measurements with a SQUID (Superconducting Quantum Interference Device). Our results suggest that electron bombardment produces a higher change in the magnetic order compared to the magnetization induced by ion bombardment.
机译:近几十年来,许多研究报告了碳基材料中的磁性。这种现象归因于样品中的结构缺陷。许多作者表现出由质子轰炸引起的跳跃(高度导向的热解石墨)磁化的增加,同时电子照射对磁性行为的影响已经无人看管。这项工作的目的是有助于了解缺陷诱导的对石墨结构和磁性的影响。为此目的,我们对Hopg的辐射进行了试验,两种不同的撞击射弹 - 电气和离子。轰击样品的结构表征通过拉曼光谱进行。在两种辐照样品上,我们鉴定与轰击诱导的疾病相关的D频带,具体取决于射弹类型的贡献。为了解释拉曼结果,法拉利等人提出的理论模型。用于分类产生的缺陷。通过用鱿鱼(超导量子干涉装置)进行磁表征测量来评估诱导损伤和磁化之间的关系。我们的结果表明,与离子轰击引起的磁化相比,电子轰击产生磁性秩序的更高变化。

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