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中国物理学会期刊

热激活磁弹性弛豫的多体普适方法研究

CSTR: 32037.14.aps.37.1401

AMANY-BODY UNIVERSAL APPROACH TO THERMALLY ACTIVATED MAGNETOELASTIC RELAXATION IN FERROMAGNETIC ALLOYS

CSTR: 32037.14.aps.37.1401
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  • 本文基于多体相互作用导致红外发散响应的弛豫机制,研究无序铁磁合金中的热激活磁弹性弛豫。即认为:引起磁畴壁弛豫的磁取向有序,除取向有序原子的热激活跃迁外,还应包括多体相互作用引起的两种不同的位形隧道效应。在此新机制的基础上,导出了分指数的磁化强度弛豫规律和磁导率减落公式。再利用波耳兹曼迭加原理,得出普适的磁弹性内耗公式,此公式得到实验数据的证实。

     

    The rmally activated magnetoelastic relaxation in disordered ferromagnetic alloys is studied by using a new relaxation mechanism based on the concept of many-body interaction leading to an infrared divergence response. It nas been found that except the thermally assisted transitions of directional ordered atoms, the directional ordering, which causes a relaxation behavior of magnetic domain walls, includes two different classes of configurational tunnelling caused by many-body interactions. Based on this mechanism, a new relaxation law of magnetization and a new formula of magnetic disaccommodation were derived. Using Boltzmann superposition principle, an universal formula of internal friction was also derived, which was verified by experimental date.

     

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