首页> 外文会议>Symposium Proceedings vol.887; Symposium on Degradation Processes in Nanostructured Materials; 20051128-1201; Boston,MA(US) >Effects of ion-beam irradiation on the L1_0 phase transformation and their magnetic properties of FePt and PtMn films
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Effects of ion-beam irradiation on the L1_0 phase transformation and their magnetic properties of FePt and PtMn films

机译:离子束辐照对FePt和PtMn薄膜L1_0相变及其磁性能的影响

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In this paper, we illustrate how to modify the structure and magnetic properties of L1_0 FePt and PtMn films using ion-beam irradiation. Highly ordered L1_0 FePt and PtMn phases were achieved directly by using 2 MeV He-ion irradiation without conventional post-annealing. A high ion-beam current density (~μA/cm~2) was used to achieve direct beam heating on samples. This irradiation-induced heating process provides efficient microscopic energy transfer and creates excess point defects, which significantly enhances the diffusion and promotes the formation of the ordered L1_0 phase. In-plane coercivity of FePt films greater than 5700 Oe could be obtained after disordered FePt films were irradiated with a He-ion dose of 2.4x10~(16) ions/cm~2. The direct ordering of FePt took place by using ion-irradiation heating at a temperature as low as 230℃. In PtMn-based spin valves, an L1_0 PtMn phase, a large exchange field and a high giant magnetoresistance (GMR) ratio (11%) were simultaneously obtained by using He-ion irradiation. On the other hand, Ge-ion and O-ion irradiation completely destroyed the ferromagnetism of FePt and the GMR of PtMn-based spin valves, respectively.
机译:在本文中,我们说明了如何使用离子束辐照修饰L1_0 FePt和PtMn膜的结构和磁性能。通过使用2 MeV He离子辐照无需常规的后退火即可直接获得高度有序的L1_0 FePt和PtMn相。使用高离子束电流密度(〜μA/ cm〜2)来实现对样品的直接束加热。这种辐射诱导的加热过程提供了有效的微观能量传递,并产生了多余的点缺陷,从而大大增强了扩散并促进了有序L1_0相的形成。用2.4×10〜(16)离子/ cm〜2的He离子剂量辐照无序的FePt薄膜,可获得大于5700 Oe的FePt薄膜的面内矫顽力。 FePt的直接订购是通过在低至230℃的温度下使用离子辐射加热进行的。在基于PtMn的自旋阀中,使用He离子辐照可同时获得L1_0 PtMn相,大交换场和高巨磁致电阻(GMR)比(11%)。另一方面,Ge离子和O离子辐射分别完全破坏了FePt的铁磁性和PtMn基自旋阀的GMR。

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