论文标题
氢化石墨烯中可调磁耦合的证据
Evidence of tunable magnetic coupling in hydrogenated graphene
论文作者
论文摘要
许多努力致力于了解用碳原子空位或氢或氟的光原子诱导的石墨烯诱导的磁矩的起源和影响。同时,在这些系统中广泛观察到的较大的负磁阻(MR)尚不清楚,也没有与磁矩的存在相关。在本文中,我们研究了超高真空(UHV)环境中原位氢化石墨烯的大型负MR的系统演变。我们发现,对于电子密度($ n_e $)和氢密度($ n_h $)的大多数组合,可以将不同温度下的MR缩放到$α=(μ_bb)/[k_b(t-t-t^*)] $,其中$ t^*$是purie-weiss温度。 $ t^* $的标志表明存在类似于氢化石墨烯中的可调铁磁性($ t^*> 0 $)和类似抗铁磁性的($ t^* <0 $)。然而,在$ | t^*| $以下的MR或异常霍尔效应的缺乏滞后是指以下事实:远程磁顺序并未出现,我们归因于不同磁性顺序的竞争和在石墨烯上磁矩无序排列的竞争。我们还发现,H Adatoms引入的局部杂质状态可以改变氢化石墨烯的电容。这项工作提供了一种从大型负MR行为中提取信息的新方法,可以成为帮助理解石墨烯中磁矩相互作用的关键。
A lot of efforts have been devoted to understanding the origin and effects of magnetic moments induced in graphene with carbon atom vacancy, or light adatoms like hydrogen or fluorine. At the meantime, the large negative magnetoresistance (MR) widely observed in these systems is not well understood, nor had it been associated with the presence of magnetic moments. In this paper, we study the systematic evolution of the large negative MR of in-situ hydrogenated graphene in ultra-high vacuum (UHV) environment. We find for most combination of electron density ($n_e$) and hydrogen density ($n_H$), MR at different temperature can be scaled to $α=(μ_BB)/[k_B(T-T^*)]$, where $T^*$ is the Curie-Weiss temperature. The sign of $T^*$ indicates the existence of tunable ferromagnetic-like ($T^* >0$) and anti-ferromagnetic-like ($T^* <0$) coupling in hydrogenated graphene. However, the lack of hysteresis of MR or anomalous Hall effect below $|T^*|$ points to the fact that long-range magnetic order did not emerge, which we attribute to the competition of different magnetic orders and disordered arrangement of magnetic moments on graphene. We also find that localized impurity states introduced by H adatoms could modify the capacitance of hydrogenated graphene. This work provides a new way to extract information from large negative MR behavior and can be a key to help understanding interactions of magnetic moments in graphene.