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Temperature evolution of self-organized stripe domains in ultrathin Fe films on MnAs/GaAs(001)

机译:MnAs / GaAs(001)上超薄铁膜中自组织条纹域的温度演化

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摘要

A detailed investigation of the magnetic behavior of an ultrathin Fe film epitaxially grown onto MnAs/ GaAs(001) is performed by means of both ferromagnetic resonance (FMR) and magneto-optical Kerr-effect (MOKE) experiments, as a function of temperature. When the MnAs underlayer is fully in the hexagonal ferromagnetic α phase (at low temperature) or in the orthorhombic non magnetic β one (at high temperature), the magnetic behavior of the Fe film is found to be nearly the same and independent of the substrate. In contrast, at intermediate temperatures, when the MnAs underlayer presents a self-organized phase consisting of α-MnAs and β-MnAs striped domains, the Fe film is strongly influenced by the dipolar (stray) fields arising from the substrate. As a consequence, the Fe film breaks in two distinct families of striped domains. Theoretical analysis of the FMR data in the whole investigated temperature range is performed using a free-energy density model which provides an accurate determination of the temperature-dependent magnetic parameters. Furthermore, the mechanism of magnetization reversal has been analyzed as a function of temperature by MOKE. The evolution of the magnetization curves can be satisfactory interpreted starting from the main achievements of the theoretical analysis of FMR data.
机译:通过铁磁共振(FMR)和磁光克尔效应(MOKE)实验,对温度外延生长在MnAs / GaAs(001)上外延生长的超薄Fe膜的磁性进行了详细研究。当MnAs底层完全处于六方铁磁性α相(在低温下)或在正交非磁性β相(在高温下)时,发现Fe膜的磁性几乎相同并且独立于衬底。相反,在中间温度下,当MnAs底层呈现由α-MnAs和β-MnAs条纹畴组成的自组织相时,Fe膜会受到基材产生的偶极(杂散)场的强烈影响。结果,铁膜在两个不同的带状畴家族中破裂。使用自由能密度模型对整个研究温度范围内的FMR数据进行理论分析,该模型可以准确确定与温度相关的磁参数。此外,已经通过MOKE分析了磁化反转的机理与温度的关系。从FMR数据理论分析的主要成果出发,可以令人满意地解释磁化曲线的演变。

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  • 来源
    《Physical review》 |2010年第9期|p.094423.1-094423.9|共9页
  • 作者单位

    CNEA, Centro Atomico Constituyentes, Avenida General Paz 1499, San Martin, Argentina Laboratorio International Franco-Argentino en Nanociencias (LIFAN);

    Laboratorio International Franco-Argentino en Nanociencias (LIFAN) CNEA, Centro Atomico Bariloche, San Carlos de Bariloche, R8402AGP Rio Negro, Argentina INSP, UPMC Paris 06, CNRS UMR 7588, 140 Rue de Lourmel, 75015 Paris, France;

    CNISM, Dipartimento di Fisica, Universita di Perugia, Via A. Pascoli, 1-06123 Perugia, Italy;

    rnCNISM, Dipartimento di Fisica, Universita di Perugia, Via A. Pascoli, 1-06123 Perugia, Italy;

    rnCNISM, Dipartimento di Fisica, Universita di Perugia, Via A. Pascoli, 1-06123 Perugia, Italy Centro S3, CNR-Istituto di Nanoscienze, Via Campi 213A, I-41125 Modena, Italy;

    rnCNISM, Dipartimento di Fisica, Universita di Perugia, Via A. Pascoli, 1-06123 Perugia, Italy;

    rnLaboratorio International Franco-Argentino en Nanociencias (LIFAN) CNEA, Centro Atomico Bariloche, San Carlos de Bariloche, R8402AGP Rio Negro, Argentina;

    rnLaboratorio International Franco-Argentino en Nanociencias (LIFAN) INSP, UPMC Paris 06, CNRS UMR 7588, 140 Rue de Lourmel, 75015 Paris, France;

    rnLaboratorio International Franco-Argentino en Nanociencias (LIFAN) INSP, UPMC Paris 06, CNRS UMR 7588, 140 Rue de Lourmel, 75015 Paris, France;

    rnLaboratorio International Franco-Argentino en Nanociencias (LIFAN) INSP, UPMC Paris 06, CNRS UMR 7588, 140 Rue de Lourmel, 75015 Paris, France;

    Istituto dei Sistemi Complessi, CNR, Via Madonna del Piano 10, Sesto Fiorentino, I-50019 Firenze, Italy;

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  • 正文语种 eng
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  • 关键词

    ferromagnetic, antiferromagnetic, and ferrimagnetic resonances; spin-wave resonance; magnetooptical effects; domain effects, magnetization curves, and hysteresis; magnetic properties of thin films, surfaces, and interfaces;

    机译:铁磁;反铁磁和亚铁磁谐振;自旋波共振磁光效应;磁畴效应;磁化曲线和磁滞;薄膜;表面和界面的磁性;

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