Abstract
Stoichiometric and nonstoichiometric $Y_{3-x}Fe_{5+x}O_{12})$ polycrystalline samples (x=0.00, 0.05, 0.10, 0.30, -0.05, -0.10, -0.30) were prepared by solid state reaction method. The magnetic properties of the sample were investigated by FMR (ferromagnetic resonance) technique at microwave frequency 5.11 GHz (G-band) and 23.39 GHz (K-band) respectively. The spectroscopic splitting factor g were estimated to be 2.04~2.35 from the derivative absorption lines. As the samples became yttrium $(Y^{3+})$ excess and iron $(Fe^{3+})$ excess, Magnetizations were decreased. But resonance linewidth were increased. To investigate the anisotropy, the angular dependence of resonance magnetic fields were measured. Angular dependence of effective magnetizations were measured by FMR from 77 K to 300 K at K-band microwave frequency (23.39 GHz) and the saturation magnetizations were measured by VSM. The Bloch coefficients B and C were determined by fitting. $M_{eff}(0)$ was obtained by the extrapolation from 80 K. From this result, the spin wave stiffness constant D $(about\; 162~206 \;eV{\AA}^2)$and average square range of exchange interaction $$$(about \;5.84~12.13\;{\AA}^2)$ were determined.
본 연구에서는 화학량론적 YIG(yttrium iron garnet : Y3Fe5O12)를 중심으로 하여 조성에 따른 비화학량론적인 YIG(Y3-xFe5+xO12)를 고상반응법으로 제작하고 5.11GHz(G-band)와 23.39 GHz(K-band)의 마이크로파 영역에서 강자성 공명 현상을 이용하여 자기적 특성을 조사하였다. 측정된 분광학적 분리상수 g는 2.02~2.35이다. 포화자화와 유효자화의 값은 x=-0.05의 조성비를 중심으로 이트륨(Y3+)초과와 철(Fe3+)이 초과함에 따라 감소하는 경향을 보였으며, 이와 반대로 선폭( p-p)은 급격히 증가하였다. 자기적 특성의 온도 의존성을 조사하기 위해 K-band에서 80K에서 상온까지 공명흡수선을 측정하여 조성에 따른 M(0), Bloch 상수 B, C 및 스핀파 경도상수 D(약 162~206eV$\AA$2)와 교환상호작용의 평균자승 영역(약 5.84~12.13$\AA$2)의 변화를 조사하였다.