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Conversion electron Moessbauer spectroscopy studies of ultrathin Fe films on MgO(001)

机译:MgO(001)上超薄铁膜的转换电子Moessbauer光谱研究

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摘要

The initial growth and influence of annealing on structural and magnetic properties of 5 monolayers epitaxial Fe films on cleaved and polished MgO(001) substrates was studied using conversion electron Moessbauer spectroscopy (CEMS). Broadening of LEED spots indicated a granular structure of the films grown at room temperature. The CEMS analysis showed that the film on the cleaved substrate is flat and consists of a 2 ML interfacial layer with the electronic structure affected by the oxidic substrate, while the remaining 3 ML are metallic with the Curie temperature below RT. Annealing changes the film structure, as seen by CEMS, but only for temperatures above 550 K. In the annealing process the continuous film breaks into 3-dimensional islands and oxidation takes place at the Fe/cleaved-MgO interface. On the polished substrate, the as-prepared film consists of small superparamagnetic metallic iron particles. Contrary to the cleaved substrate, no oxidation is observed at the interface upon annealing.
机译:使用转换电子Moessbauer光谱(CEMS)研究了分裂和抛光的MgO(001)衬底上5个单层外延Fe膜的初始生长及其退火对结构和磁性的影响。 LEED点的变宽表明在室温下生长的薄膜呈颗粒状结构。 CEMS分析表明,裂开的底物上的薄膜是平坦的,由2 ML的界面层组成,其电子结构受氧化底物的影响,而其余的3 ML是金属的,居里温度低于RT。退火会改变膜的结构,如CEMS所见,但仅在550 K以上的温度下才会发生。在退火过程中,连续的膜会破裂成3维岛状结构,并且在Fe /裂解的MgO界面发生氧化。在抛光的基材上,所制备的膜由小的超顺磁性金属铁颗粒组成。与裂解的底物相反,退火后在界面处未观察到氧化。

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