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Dy‐doped MnCuBi0.86 films for magneto‐optic storage application

机译:掺storage的MnCuBi0.86膜用于磁光存储应用

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Magnetic and magneto‐optic properties of MnCu1-XDyXBi0.86 (0⩽X⩽0.30) films prepared by vacuum deposition are reported. The rectangularity of the magnetic hysteresis loops and their relative remanence of MnCuBi0.86 films are improved remarkably by dysprosium doping. The coercive field increases considerably with increasing dysprosium concentration X. At the wavelength 6328 Å, the Faraday rotation at room temperature decreases with increasing dysprosium concentration from 2.7×105 deg/cm for X=0 to 1.5×105 deg/cm for X=0.30. The Faraday rotation increases gradually with decreasing wavelength. The maximum Faraday rotation appears at about 5100 Å wavelength. The magneto‐optic figure of merit for transmission‐type memory use decreases from about 1.3 deg for X=0 to 0.85 deg for X=0.30 at a wavelength of 6328 Å. These figures of merit are one‐third to one‐half of those of MnBi, but they are still greater than those of the other magneto‐optic materials. The MnCu1-XDyXBi0.86(0⩽X⩽0.30) films, with excellent magnetic hysteresis characteristics, have been shown to be suitable for magneto‐optic storage media.
机译:报告了通过真空沉积制备的MnCu1-XDyXBi0.86(0⩽X⩽0.30)薄膜的磁和磁光特性。掺杂可显着改善磁滞回线的矩形性和MnCuBi0.86膜的相对剩磁。随着浓度X的增加,矫顽场显着增加。在波长6328Å下,室温下的法拉第旋转随着浓度的增加而降低,从X = 0的2.7×105 deg / cm到X = 0.30的1.5×105 deg / cm 。随着波长的减小,法拉第旋转逐渐增加。最大法拉第旋转出现在约5100Å波长处。传输型存储器使用的磁光品质因数在波长6328Å下从X = 0的约1.3度降低到X = 0.30的0.85度。这些品质因数是MnBi的三分之一至二分之一,但仍比其他磁光材料大。 MnCu1-XDyXBi0.86(0⩽X⩽0.30)薄膜具有出色的磁滞特性,已被证明适用于磁光存储介质。

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    《Journal of Applied Physics 》 |1976年第10期| P.4663-4665| 共3页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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