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首页> 外文期刊>IEEE Transactions on Magnetics >Magnetic, magneto-optical and dynamic characteristics of exchanged-coupled NdTbFeCo/TbFeCo films for 532 nm recording media
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Magnetic, magneto-optical and dynamic characteristics of exchanged-coupled NdTbFeCo/TbFeCo films for 532 nm recording media

机译:532 nm记录介质的NdTbFeCo / TbFeCo交换耦合膜的磁,磁光和动态特性

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A magnetic, magneto-optical and structural study was performed on exchanged-coupled (EC) layers between NdTbFeCo and TbFeCo films for 532 nm recording media. The saturation magnetization (Ms) of separate read-out (RO) and storage (ST) films varied from 177 to 269 emu/cm/sup 2/ and from 73 to 87 emu/cm/sup 2/, respectively, in the sputtering power range 0.4 to 0.73 kW, at a fixed Ar gas flow rate. Coercivity (Hc) and Kerr angle (/spl theta//sub k/) of RO were in the range 0.46 kOe to 0.65 kOe and 0.34/spl deg/ to 0.38/spl deg/, respectively, for Ar gas flow rate between 15 to 40 sccm, and no great changes were found in the surface morphologies, as observed with atomic force microscopy (AFM). Hc and squareness rose from 2 kOe to 6 kOe and 0.6 to 0.98 with increasing R from 1.5 to 8, where R is the thickness ratio of NdTbFeCo to TbFeCo (total thickness 200 /spl Aring/, 250 /spl Aring/) in the five layered system SiN/sub x//NdTbFeCo/TbFeCo/SiN/sub x//Al-Ti. The carrier-to-noise ratio (CNR) increased by about 8 dB, as R was raised from 1.5 to 3. The films were prepared by magnetron rf-dc continuous sputtering. No atomic mixing between NdTbFeCo and TbFeCo layer occurred, as confirmed by TEM cross sectional observations.
机译:对NdTbFeCo和TbFeCo膜之间的532 nm记录介质之间的交换耦合(EC)层进行了磁,磁光和结构研究。在溅射中,分开的读出(RO)和存储(ST)膜的饱和磁化强度(Ms)分别从177到269 emu / cm / sup 2 /和73到87 emu / cm / sup 2 /氩气流量固定时,功率范围为0.4到0.73 kW。 RO的矫顽力(Hc)和Kerr角(/ spl theta // sub k /)在15介于15之间的Ar气体流量时分别在0.46 kOe至0.65 kOe和0.34 / spl deg /至0.38 / spl deg /的范围内原子力显微镜(AFM)观察到40至40 sccm,表面形态没有发现很大变化。 Hc和矩形度从2 kOe升高到6 kOe,从0.6增加到0.98,其中R从1.5增大到8,其中R是NdTbFeCo与TbFeCo的厚度比(总厚度为200 / spl Aring /,250 / spl Aring /)分层系统SiN / sub x // NdTbFeCo / TbFeCo / SiN / sub x // Al-Ti。当R从1.5提高到3时,载噪比(CNR)增加了约8 dB。通过磁控管rf-dc连续溅射制备薄膜。如通过TEM横截面观察所证实的,在NdTbFeCo和TbFeCo层之间没有发生原子混合。

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