antiferromagnetic中文,antiferromagnetic的意思,antiferromagnetic翻译及用法

2025-07-18 17:34 浏览次数 3

antiferromagnetic

英[ænti:ferəʊmæɡ'netɪk]美[æntiferoʊmæɡ'netɪk]

adj. [物] 反铁磁性的

antiferromagnetic 英语释义

英语释义

  • relating to antiferromagnetism

antiferromagnetic 片语

片语

antiferromagnetic ferroelectrics抗铁磁铁电体

antiferromagnetic materials反铁磁材料

antiferromagnetic structure抗铁磁结构

antiferromagnetic susceptibility反铁磁感应性

antiferromagnetic particles反铁磁颗粒

antiferromagnetic interaction反铁磁相互作用

antiferromagnetic domain反铁磁畴

the antiferromagnetic反铁磁

antiferromagnetic 例句

英汉例句

  • Furthermore, the quantum phase transition in an easy-axis antiferromagnetic Heisenberg spin-1 chain is numerically studied.

    其次,我们讨论了自旋为1的易磁化轴反铁磁海森堡链的量子相变。

  • The effect of bulk single uniaxial anisotropy on dispersion relations and resonant spectra of spin waves in bilayer films with antiferromagnetic coupling are investigated.

    研究了具有各向异性的双层磁性薄膜中自旋波的本征值问题 ,重点讨论了磁各向异性对自旋波波形的影响 。

  • The effect of the external magnetic field on macroscopic quantum tunneling in biaxial single domain antiferromagnetic particles is studied with the help of the instanton method.

    用瞬子方法研究了外加磁场对单畴双轴反铁磁颗粒宏观量子效应的影响。

  • One of the most remarkable character of these materials is that the parent compounds have a structure transition and a antiferromagnetic transition at low temperatures.

    这些材料的一个显着特点是,在低温时,母体化合物会发生结构相变和反铁磁相变。

  • In this paper, we investigate dispersion properties of an antiferromagnetic photonic crystal waveguide.

    研究了平面反铁磁光子晶体波导的色散性质。

  • For this reason the driving force of nematicity in these iron-based materials is usually regarded as the antiferromagnetic correlation.

    所以通常认为这些铁基材料中的向列相是由反铁磁关联驱动。

  • All the compounds are spin-glass or cluster-glass phase below a certain temperature due to the competition between the antiferromagnetic and ferromagnetic correlations.

    低温下始终出现自旋玻璃或团簇玻璃行为,说明存在反铁磁与铁磁的相互竞争。

  • These simulated results explain the experimental facts in the granular films with antiferromagnetic coupling well.

    模拟结果很好地解释了具有反铁磁耦合的颗粒膜的实验事实。

  • It is widely expected that the superconductivity should be intrinsically connected to the frustrated magnetic correlations which presumably cause both structure and antiferromagnetic transitions.

    人们普遍认为,超导的产生应该和磁性阻挫有着内在的联系,因为磁性阻挫很可能会导致结构相变和反铁磁相变。

  • The ferromagnetism can be significantly improved since the doping of Co changes the G antiferromagnetic order into the ferromagnetic one.

    掺杂导致原有的G型反铁磁序发生变化,形成了亚铁磁序的磁结构,材料的铁磁性有了很大提高;

  • On the basis of the results obtained, the spin-wave resonance of a ferromagnetic film with a surface of antiferromagnetic oxide is discussed.

    在所得结果的基础上,讨论了具有反铁磁氧化层的铁磁薄膜的自旋波共振。

  • Under the random bond condition, in particular, when there exists antiferromagnetic interaction, we obtain many meaningful results.

    在键无规条件下,特别当反铁磁交换相互作用存在时,我们得到了一些有意义的结果。

  • In the case of the ferromagnetic and antiferromagnetic phase transitions, the results are in agreement with the known exact and the best approximate ones very satifatorily.

    对应于铁磁及反铁磁相变,其结果与已知的严格解及最好近似解一致。

  • This phenomenon was interpreted by an antiferromagnetic coupling between two types of magnetic grains having different average diameters in the nanocomposites.

    该现象可以用两种平均直径不同的磁畴间的反铁磁耦合现象来解释。

  • We also discuss the phase diagram, the stripe antiferromagnetic state and the spin fluctuations in this system.

    我们也分析了体系的基态相图、条纹反铁磁态和自旋涨落。

  • The temperature dependence of exchange bias and coercivity of ferromagnetic layer and antiferromagnetic gain layer is discussed.

    讨论了铁磁反铁磁双层膜中交换偏置和矫顽场随温度变化的关系。

  • Using spin wave theory and the equation of motion technique for the Green function, specific heat of ferromagnetic antiferromagnetic double layers at low temperature is investigated.

    应用线性自旋波的理论和格林函数运动方程技术,利用数值计算的方法得到铁磁-反铁磁双层系统的低温比热。

  • The method is different from the traditional single antiferromagnetic material growth or the conventional atom substituted doped growth.

    本方法不同于传统的单一反铁磁材料生长,或常规的原子替位的掺杂生长。

  • In the structure of 1, CuI ion site between the two CuII ions, which blocks the magnetic coupling of the spin center, so the compound show very weak antiferromagnetic behaviors.

    在配合物1中,结构中存在一价铜,并且这个一价铜嵌在所有的二价铜之间,这就阻碍了顺磁离子之间的磁耦合,所以这个配合物呈现出非常弱的反铁磁耦合。

  • The training effect is a result of thermally activation reversal of the antiferromagnetic layer through the exchange coupling.

    练习效应则是由于交换耦合系统中反铁磁层的热激活反转所引起的。

  • Considering the interface couplings (ferromagnetic coupling and antiferromagnetic coupling), the spin-wave dispersion relations, wave forms and resonant spectra in ferromagnetic bilayers are studied.

    对双层铁磁薄膜构成的系统,考虑界面铁磁性和反铁磁性耦合对自旋波色散关系、波形演化及共振的影响。

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