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Selective 2p-3d electron orbits exchange coupling in amorphous rare earth-transition metal-boron alloys

机译:非晶态稀土过渡金属-硼合金中的选择性2p-3d电子轨道交换耦合

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摘要

One of the major bottlenecks in amorphous light rare earth-transition metal (LRE-TM) alloy films for magneto-optic (MO) recording media in blue wavelengths (/spl sim/400 nm) is the large demagnetization energy (E/sub D/), which originates from shape anisotropy of the samples and decreases the effective magnetic anisotropy energy K/sub Ueff/ perpendicular to the film planes. The reduction of this demagnetization energy and enhancement of polar Kerr rotation angles (/spl theta//sub K/) are attempted by the addition of boron (B) into the amorphous LRE-TM films, such as amorphous (NdFe)/sub 100-X/B/sub X/ films. The additive B plays the role of reducing an Fe sub-magnetic moment by selective 2p-3d electron orbits exchange coupling (SEC) between B and Fe. The SEC results in the reduction of E/sub D/, enhancement of K/sub Ueff/ and increase of /spl theta//sub K/ in the amorphous (NdFe)/sub 100-X/B/sub X/ alloy films.
机译:用于蓝色波长(/ spl sim / 400 nm)的磁光(MO)记录介质的非晶态稀土稀土金属(LRE-TM)合金膜的主要瓶颈之一是较大的退磁能(E / sub D /),其源自样品的形状各向异性,并减小了垂直于膜平面的有效磁各向异性能K / sub Ueff /。试图通过将硼(B)添加到非晶LRE-TM薄膜(例如非晶(NdFe)/ sub 100)中来减少这种退磁能量并提高极性克尔旋转角(/ spl theta // sub K /) -X / B / sub X /电影。添加剂B的作用是通过B和Fe之间的选择性2p-3d电子轨道交换耦合(SEC)来减少Fe亚磁矩。 SEC导致非晶(NdFe)/ sub 100-X / B / sub X /合金膜中E / sub D /的减少,K / sub Ueff /的增加和/ spl theta // sub K /的增加。

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