1、

The quantum theory of ferromagnetism

铁磁性的量子理论

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2、

The Zn_ ( 1-x) Co_xO crystal's magnetization vary unobviously as the temperature rises under the room temperature, the hysteresis loop of Zn_ ( 1-x) Co_xO crystals at 300 K was obtained, and showing room-temperature ferromagnetism.

Zn(1-x)CoO x晶体的磁化强度随温度变化很小,在室温300K存在明显的磁饱和现象和磁滞回线,表明具有室温铁磁性。

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3、

Stability analysis of ferromagnetism crystal thermodynamic property

铁磁晶体热力学性质的稳定性分析

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4、
5、

The softening of Magnon of Two Dimensional Insulating Ferromagnetism on the Δ Line under Absolute Zero Temperature

铁磁共振双稳态多谐振荡器零温下在Δ线二维绝缘铁磁体的磁振子软化

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6、

Development of ferromagnetism nanometer Co particles used for self-assembled

用于自组装巨磁阻材料的铁磁性纳米Co粒子的研制

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8、

but the dms gan doped mn ( gamnn) with a curie temperature higher than room temperature is one kind of the preferred materials which have carrier-induced ferromagnetism at room temperature or a higher temperature.

掺Mn的氮化镓(GaN)基DMS&(Ga,Mn)N的居里温度超过室温,是能实现室温或更高温度下载流子诱导铁磁性的优选材料。

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9、

the implanted co atoms agglomerated and formed superparamagnetic co clusters, which resulted in the decrease of the ferromagnetism.

是由于Co原子聚集形成了超顺磁性的Co纳米颗粒,减弱了样品的铁磁性。

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10、

We ferromagnetism in carbon-doped ZnO.

我们提出碳掺杂氧化锌具有铁磁性.

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11、

Dietl et al. predicted that p type Mn doped ZnO could have ferromagnetism at room temperature.

Dietl等人的理论计算预测,p型掺杂(Zn, Mn)O可能具有室温铁磁性.

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12、

Iron filaments are drawn to a magnet The physical origin of the ferromagnetism and antiferromagnetism was explained.

铁丝被磁铁吸了过去。对材料产生铁磁性和反铁磁性的物理根源进行解释。

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13、

Starting Performance Analysis of Self-Start Rare Earth Single-Phase Permanent-Magnet Synchronous Motor The physical origin of the ferromagnetism and antiferromagnetism was explained.

自起动稀土永磁单相同步电动机起动性能分析对材料产生铁磁性和反铁磁性的物理根源进行解释。

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14、

The physical origin of the ferromagnetism and antiferromagnetism was explained.

对材料产生铁磁性和反铁磁性的物理根源进行解释。

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15、

The results show that the field induced antiferromagnetism → ferromagnetism transitions in Mn sublattice are founded in the antiferromagnetic state temperature range.

结果表明,当这些化合物处于反铁磁状态的温度范围内时,Mn次晶格中发生了场诱导的从反铁磁状态到铁磁状态的一级磁相变。

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