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Characteristics of MnxSi1-xTe Compound Studied by Electron Magnetic Resonance and Other Experiments
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  • Characteristics of MnxSi1-xTe Compound Studied by Electron Magnetic Resonance and Other Experiments
  • Characteristics of MnxSi1-xTe Compound Studied by Electron Magnetic Resonance and Other Experiments
저자명
Na. Sung-Ho,Kim. Heung-Chul,Park. Jung-Woo,Kim. Jang-Whan
간행물명
Journal of magnetics
권/호정보
2008년|13권 1호|pp.23-29 (7 pages)
발행정보
한국자기학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

The magnetic and other physical characteristics of $Mn_xSi_{1-x}Te$ have been investigated by electron magnetic resonance (EMR), X-ray diffraction (XRD) and other experiments. $Mn_xSi_{1-x}Te$ is found to have corundum structure for manganese contents up to 10% and also to be ferromagnetic for temperatures below 80 K. While ferromagnetic resonance signal coexists with the usual paramagnetic resonance signal, invariance of the g-factor inferred from the electron paramagnetic resonance signals throughout all temperature ranges clearly confirms that the manganese ions are in the electronic 3d5 state. The temperature dependence of EMR line-width is the same as other diluted magnetic semiconductors. From the EMR signals relaxation times $T_2$ and $T_1$ of $Mn_xSi_{1-x}Te$ compounds are estimated to be about $4.4{ imes}10^{-10}s$ and $9.3{ imes}10^{-8}s$ respectively and are found to vary slightly with temperature or composition change. Exchange narrowing of the EMR line-width becomes dominant for the sample in which the substitution ratio, x = 30%. For one sample, in which x = 0.5%, spin glass-like behavior is indicated by EMR signals for temperatures lower than 60 K. This behavior may authentic for samples within a certain range of x.