Krichevtsov Boris, Korovin Alexander, Suturin Sergey, Levin Aleksandr A, Lobov Ivan, Telegin Andrey, Badalyan Andrey, Sakharov Vladimir, Serenkov Igor, Dorogov Maxim, Sokolov Nikolai
Ioffe Institute, Politechnicheskaya 26, 194021 St. Petersburg, Russia.
M.N. Mikheev Institute of Metal Physics, 18 S. Kovalevskaya Str., 620108 Ekaterinburg, Russia.
Materials (Basel). 2023 Jun 15;16(12):4417. doi: 10.3390/ma16124417.
Thin films of BaM hexaferrite (BaFeO) were grown on α-AlO(0001) substrates by laser molecular beam epitaxy. Structural, magnetic, and magneto-optical properties were studied using medium-energy ion scattering, energy dispersive X-ray spectroscopy, atomic force microscopy, X-ray diffraction, magneto-optical spectroscopy, and magnetometric techniques, and the dynamics of magnetization by ferromagnetic resonance method. It was shown that even a short time annealing drastically changes the structural and magnetic properties of films. Only annealed films demonstrate magnetic hysteresis loops in PMOKE and VSM experiments. The shape of hysteresis loops depends on thickness of films showing practically rectangular loops and high value of remnant magnetization (/99%) for thin films (50 nm) and much broader and sloped loops in thick (350-500 nm) films. The magnitude of magnetization 4π ≈ 4.3 kG in thin films corresponds to that in bulk BaM hexaferrite. Photon energy and sign of bands in magneto-optical spectra of thin films correspond to ones observed earlier in bulk samples and films of BaM hexaferrite. FMR spectra of 50 nm films at 50 GHz consist of a number of narrow lines. The width of main line ΔH20 Oe is lower than has been reported up to now.
通过激光分子束外延在α-Al₂O₃(0001)衬底上生长了钡铁氧体(BaFe₁₂O₁₉)薄膜。使用中能离子散射、能量色散X射线光谱、原子力显微镜、X射线衍射、磁光光谱和磁力测量技术研究了其结构、磁性和磁光特性,并通过铁磁共振方法研究了磁化动力学。结果表明,即使短时间退火也会显著改变薄膜的结构和磁性。只有退火后的薄膜在磁光克尔效应(PMOKE)和振动样品磁强计(VSM)实验中表现出磁滞回线。磁滞回线的形状取决于薄膜的厚度,薄膜(50nm)呈现出近乎矩形的回线和高剩磁值(约99%),而厚膜(350-500nm)的回线则更宽且倾斜。薄膜中的磁化强度4π≈4.3kG与块状钡铁氧体中的相当。薄膜磁光光谱中的光子能量和能带符号与之前在块状样品和钡铁氧体薄膜中观察到的一致。50nm薄膜在50GHz下的铁磁共振光谱由许多窄线组成。主线宽度ΔH~20Oe低于迄今为止报道的值。