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Yttrium Iron Garnet Thin Films with Very Low Damping Obtained by Recrystallization of Amorphous Material

机译:通过非晶态材料的重结晶获得非常低阻尼的钇铁石榴石薄膜

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摘要

We have investigated recrystallization of amorphous Yttrium Iron Garnet (YIG) by annealing in oxygen atmosphere. Our findings show that well below the melting temperature the material transforms into a fully epitaxial layer with exceptional quality, both structural and magnetic. In ferromagnetic resonance (FMR) ultra low damping and extremely narrow linewidth can be observed. For a 56 nm thick layer a damping constant of α = (6.15 ± 1.50) · 10−5 is found and the linewidth at 9.6 GHz is as small as 1.30 ± 0.05 Oe which are the lowest values for PLD grown thin films reported so far. Even for a 20 nm thick layer a damping constant of α = (7.35 ± 1.40) · 10−5 is found which is the lowest value for ultrathin films published so far. The FMR linewidth in this case is 3.49 ± 0.10 Oe at 9.6 GHz. Our results not only present a method of depositing thin film YIG of unprecedented quality but also open up new options for the fabrication of thin film complex oxides or even other crystalline materials.
机译:我们已经研究了通过在氧气气氛中退火对非晶钇铁石榴石(YIG)的重结晶。我们的发现表明,在远低于熔化温度的情况下,材料会转变为具有卓越品质的完全外延层,包括结构和磁性。在铁磁共振(FMR)中,可以观察到超低阻尼和极窄的线宽。对于一个56 nm厚的层,发现阻尼常数为α=(6.15±1.50)·10 −5 ,并且在9.6 GHz处的线宽小至1.30±0.05 Oe,这是最低值。迄今为止,报道了PLD生长的薄膜。即使对于20 anm厚的层,阻尼常数仍为α=(7.35±1.40)·10 -5 ,这是迄今为止出版的超薄膜的最低值。在这种情况下,FMR线宽在9.6 GHz时为3.49±0.10Oe。我们的结果不仅提出了一种沉积质量前所未有的薄膜YIG的方法,而且为制造薄膜复合氧化物甚至其他晶体材料开辟了新的选择。

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