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Strong uniaxial anisotropies of iron grown on UHV cleaved lnAs(110) investigated by correlated scanning tunneling microscopy and ferromagnetic resonance

机译:通过相关扫描隧道显微镜和铁磁共振研究在特高压裂解的lnAs(110)上生长的铁的强单轴各向异性

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The magnetic properties of iron films grown under UHV condition are governed by the deposition condition and the substrate preparation. One way of producing almost perfect surface conditions with large terrace width and exact orientation is cleaving. With this method no additional cleaning process of the surface is needed. Here we present our investigations of iron films (thickness: 0.1-30nm) grown on UHV cleaved InAs substrates using in situ scanning tunnel microscopy (STM) investigations combined with in situ magneto-optical Kerr effect (MOKE) and ex situ angle and frequency dependent conventional ferromagnetic resonance (FMR). The (110) InAs surface allows the investigation of three magnetic axes: in-plane easy (001), hard (111), and intermediate (110) axes of the iron layer. The (110) symmetry of the magnetic cubic crystalline anisotropy should lead to angles of 110° and 70° between the hard axes, respectively. STM images of the clean InAs(110) show 500 nm wide terraces with mono atomic steps predominately oriented parallel to the (001) direction. MOKE hysteresis loops were measured during the Fe deposition to prove the ferromagnetic state. The angle dependent in-plane FMR measurement revealed unexpected 90° symmetry. Deducing the anisotropy constants from the FMR resonance position, one finds a slightly and angle dependent FMR and STM measurements evidences that the uniaxial anisotropy is due to the dislocations caused by the orientation of the terraces.
机译:在UHV条件下生长的铁膜的磁性能受沉积条件和基底制备的支配。开裂是产生具有大平台宽度和精确方向的几乎完美的表面条件的一种方法。使用这种方法,不需要表面的额外清洁过程。在这里,我们使用原位扫描隧道显微镜(STM)研究结合原位磁光Kerr效应(MOKE)以及异位角度和频率依赖性,介绍了对在UHV裂解InAs衬底上生长的铁膜(厚度:0.1-30nm)的研究常规铁磁共振(FMR)。 (110)InAs表面允许研究三个磁轴:铁层的平面内易轴(001),硬轴(111)和中间轴(110)。磁性立方晶体各向异性的(110)对称性应导致硬轴之间的夹角分别为110°和70°。干净的InAs(110)的STM图像显示了500 nm宽的台阶,其单原子台阶主要平行于(001)方向。在Fe沉积过程中测量了MOKE磁滞回线,以证明铁磁状态。角度相关的平面FMR测量显示出意外的90°对称性。从FMR共振位置推导出各向异性常数,人们发现了一种与角度和角度有关的FMR和STM测量值,这些证据表明单轴各向异性是由于平台取向引起的位错所致。

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