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1)  Electric-anisotropism & Magnetic-anisotropism
电各向异性与磁各向异性
2)  AMR
各向异性磁电阻
1.
Study on AMR Properties of Ni_(65)Co_(35) Thin Films;
Ni_(65)Co_(35)薄膜各向异性磁电阻性能的研究
2.
A “mixed” effect of the free and pinned layers on anisotropic magnetoresistance (AMR) has been obtserved.
结果表明 ,在样品中存在着自由层和被钉扎层之间的各向异性磁电阻的“混合”效应 。
3.
The zero field resistivity (ρ), anisotropy magnetoresistance (AMR) and microstructures for both as-grown and post-annealed films are measured.
5nm)/Ni82Fe18(tnm)/Ta(3nm)坡莫合金系列膜,并进行了中温退火(200°C),测量了退火前后样品的零场电阻率(ρ),各向异性磁电阻(AMR)和微结构;从实验角度研究了中温退火对ρ和AMR随NiFe厚度(t)变化的影响,并探讨了该影响的微观机制。
3)  Anisotropic magnetoresistance
各向异性磁电阻
1.
Effects of sputtering conditions on the anisotropic magnetoresistance of Ni_(80)Fe_(20) thin films;
溅射条件对Ni_(80)Fe_(20)薄膜各向异性磁电阻的影响
2.
Effects of seed layers on the anisotropic magnetoresistance of NiCo films;
种子层对NiCo薄膜各向异性磁电阻效应的影响
3.
Studies of the process technology and microstructure of Ni_(81)Fe_(19) anisotropic magnetoresistance films;
Ni_(81)Fe_(19)各向异性磁电阻薄膜的工艺和微结构的研究
4)  magnetic anisotropy
磁各向异性
1.
Element-specific in-plane magnetic anisotropy in Co_(0.9)Fe_(0.1) films;
Co_(0.9)Fe_(0.1)薄膜面内元素分辨的磁各向异性
2.
Thermal annealing at 100℃ shows that large perpendicular magnetic anisotropy and coercivity still remain after annealing,inverse magnetostrictive anisotropy and coercivity still remain after annealing,inverse magnetostrictive anisotropy is one part of perpendicular magnetic anisotropy and responsible for the decrease of coercivity.
10 0℃退火表明 ,薄膜保留较大的垂直磁各向异性、矫顽力和很好的矩形比 ,磁致伸缩各向异性是引起矫顽力下降的主要原因。
3.
The magnetic anisotropy constants of the samples with various grain size were obtained by the studies of collecti.
通过对集体磁激发现象的研究,得到了不同颗粒尺寸的α-Fe_2O_3超微粒的磁各向异性能常数。
5)  Electrical anisotropy
电各向异性
1.
Electrical anisotropy of formation is the one of important research areas in anisotropy.
地层的电各向异性是各向异性的重要研究领域之一。
6)  transverse magnetic anisotropy
横向磁各向异性
1.
The theoretical results of multilayered film with transverse magnetic anisotropy show that, the maximum impedance occurs when magnetic field is close to the effective anisotropy field at high frequencies, smaller resistivity of the conducted layer would lead to a larger impedance change ratio in multilayered film.
对于单轴横向磁各向异性多层膜,理论计算结果表明:高频阻抗在某一外加磁场(近似等于等效各向异性场)下出现最大值,铁磁层和导电层电阻率相差较大的多层膜中将出现较强的巨磁阻抗效应。
补充资料:滑移感生各向异性
      磁性材料经冷加工产生滑移而引起的磁各向异性,也称轧制感生各向异性(roll magnetic anisotropy)。它是一种单轴各向异性。材料的塑性变形主要是以滑移方式进行的,晶体滑移过程产生的同类原子对的短程方向有序排列而导致各向异性。在简单的AB型合金中,水平方向上A类原子与B类原子呈AB原子对排列。当受一剪切应力而产生滑移时,A和B原子移动到新的稳定位置,在垂直方向上造成AA和BB原子的有序排列方向(见图),易磁化轴就位于此方向上。50Ni-Fe合金(Isoperm)经90%以上压下率冷轧,所产生的滑移感生各向异性为105erg/cm3量级,这比该合金经磁场热处理得到的各向异性约大50倍(见择优取向)。
  

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