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Enhanced Magneto-optic Kerr Effect and Magnetic Properties of CeY[subscript 2]Fe[subscript 5]O[subscript 12] Epitaxial Thin Films

机译:CeY [下标2] Fe [下标5] O [下标12]外延薄膜的增强磁光克尔效应和磁性

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摘要

The magnetic and magneto-optic properties of epitaxial CeY[subscript 2]Fe[subscript 5]O[subscript 12] (Ce ∶ YIG) and Y[subscript 3]Fe[subscript 5]O[subscript 12] (yttrium iron garnet or YIG) thin films grown by pulsed laser deposition on gadolinium gallium garnet substrates are determined. An enhanced Faraday effect is known to result from Ce substitution into the yttrium iron garnet lattice, and here we characterize the magneto-optic Kerr effect, as well as the magnetic hysteresis and ferromagnetic resonance response that result from the Ce substitution. X-ray diffraction analysis reveals a high crystallographic quality for the Ce ∶ YIG films. Measurements of the magneto-optic Kerr effect for two different wavelengths demonstrate that the Ce ∶ YIG exhibits an up-to-tenfold increase in Kerr rotation compared to YIG. The Ce ∶ YIG has a slightly larger magnetic moment, as well as increased magnetic damping and higher magnetic anisotropy compared to YIG with a dependence on the crystalline orientation. By specific cerium substitution in YIG, our results show that the engineering of a large Kerr effect and tailored magnetic anisotropy becomes possible as required for magneto-optically active spintronic devices.
机译:外延CeY [下标2] Fe [下标5] O [下标12](Ce:YIG)和Y [下标3] Fe [下标5] O [下标12](钇铁石榴石或确定了通过脉冲激光沉积在ado镓石榴石衬底上生长的薄膜。已知将Ce置换成钇铁石榴石晶格会导致增强的法拉第效应,在这里我们表征了磁光Kerr效应,以及由Ce置换导致的磁滞和铁磁共振响应。 X射线衍射分析表明Ce:YIG薄膜具有较高的晶体学质量。对两种不同波长的磁光Kerr效应的测量结果表明,与YIG相比,Ce:YIG的Kerr旋转度提高了十倍。与YIG相比,Ce:YIG的磁矩稍大一些,并且具有更大的磁阻尼和更高的磁各向异性,这取决于晶体取向。通过YIG中特定的铈替代,我们的结果表明,根据磁光有源自旋电子器件的要求,可以实现大Kerr​​效应和定制的磁各向异性的工程设计。

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