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Perpendicular exchange bias effect in CoFeB/Pt/MnIr multi-layers.

机译:CoFeB / Pt / MnIr多层中的垂直交换偏压效应。

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The exchange bias effect is investigated in CoFeB / MnIr multilayers system with perpendicular magnetic anisotropy. An interlayer of Pt (0.5nm) between CoFeB and MnIr layer enhanced both the perpendicular anisotropy and the exchange bias. Both the exchange bias and the coercivity field depend on the thickness of the MnIr layer, the largest exchange bias field of 201.7 Oe was obtained in a 5nm MnIr thickness samples which had been annealed at 573 K in external magnetic fi eld. The exchange bias becomes weaker when the thickness of the Cu or Pd underlayer increases in [Pd / CoFeB] 4 / MnIr multilayer system. The Gilbert damping constant obtained from the Kerr effect (TR-MOKE) measurement increases as the thickness of Cu or Pd underlayer increases. However, in the pump-probe measurement, the exchange bias fi elds decreased before the Kerr signal starts change and restored when the change of the Kerr signal reaches its maxima, the total time of this process is about 1 ps. The loss of the exchange bias is probably attributed to the electron temperature. The relation between the exchange bias and the Gilbert damping constant is detail discussed.
机译:在具有垂直磁各向异性的CoFeB / MnIr多层体系中研究了交换偏压效应。 CoFeB和MnIr层之间的Pt夹层(0.5nm)增强了垂直各向异性和交换偏压。交换偏压和矫顽力场均取决于MnIr层的厚度,在5nm的MnIr厚度样品中获得了最大的201.7 Oe交换偏压场,该样品已在573 K的外部磁场中进行了退火。在[Pd / CoFeB] 4 / MnIr多层体系中,Cu或Pd底层的厚度增加时,交换偏压变弱。通过Kerr效应(TR-MOKE)测量获得的吉尔伯特阻尼常数随Cu或Pd底层厚度的增加而增加。然而,在泵浦探针测量中,交换偏压场在Kerr信号开始变化之前减小,而在Kerr信号的变化达到最大值时恢复,因此该过程的总时间约为1 ps。交换偏压的损失可能归因于电子温度。详细讨论了交换偏置和吉尔伯特阻尼常数之间的关系。

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