Unraveling Microscopic Origin of Nb 4d Transition-Metal-Induced Magnetic Anisotropy Evolution in W/CoFeB Heterostructures

被引:0
作者
Gupta, Neha [1 ,2 ]
Nath, Sudip [1 ]
Komma, Gnana Spoorthy [3 ]
Pothana, Nageshwara Rao [1 ]
Garg, Deepak [4 ]
Singh, Shreyashkar Dev [1 ,2 ]
Reddy, Varimalla Raghavendra [5 ]
Kumar, Dileep [5 ]
Rai, Sanjay Kumar [1 ,2 ]
Gupta, Pooja [1 ,2 ]
机构
[1] Raja Ramanna Ctr Adv Technol, Accelerator Phys & Synchrotrons Utilizat Div, Indore 452013, India
[2] Homi Bhabha Natl Inst, Mumbai 400094, India
[3] Raja Ramanna Ctr Adv Technol, Superconducting Cav Characterizat & Cryogen Sect, Indore 452013, India
[4] Forschungszentrum Julich, Julich Ctr Neutron Sci JCNS, Maier Leibnitz Zentrum MLZ, D-85748 Garching, Germany
[5] UGC DAE Consortium Sci Res, Indore 452017, India
关键词
XMCD; magnetic anisotropy; CoFeB alloy films; Kerr imaging; MOKE; RAY CIRCULAR-DICHROISM; MAGNETOCRYSTALLINE ANISOTROPY; THERMAL-STABILITY; FILMS; DEPENDENCE; INTERFACE; ALLOYS; MOMENT;
D O I
10.1021/acsaelm.5c00494
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The tuning of magnetic anisotropy in magnetic thin films is the key aspect in the condensed matter physics research field to develop materials useful for practical applications. In the present work, we have investigated the microscopic origin of magnetic anisotropy evolution in W-buffered (CoFeB)100-x Nb x (x = 0, 3, 5, 10) alloy films induced by a 4d transition metal (Nb). All films were prepared at an elevated growth temperature of 500 degrees C using the magnetron sputtering technique. Nb-free films (x = 0) exhibit a polycrystalline structure, magnetically isotropic nature, and soft magnetism (coercive field similar to 30 Oe). Systematic addition of Nb (from x = 0 to 10) leads to microstructural transformation from polycrystalline to nearly amorphous structure, with a reduction in grain size (from similar to 9 to similar to 3 nm), surface smoothening, enhanced soft magnetism (coercive field decreases from similar to 30 to similar to 6 Oe), and more importantly, the emergence of magnetic anisotropy in CoFeB films. In the anisotropic state, angular variation of coercivity reveals that the magnetization reversal process is consistent with a two-phase model. Remarkably, the orbital and spin magnetic moments of Fe and Co atoms were quantified using an element-specific technique of X-ray magnetic circular dichroism. The correlation between the orbital-to-spin moment ratio and observed magnetic anisotropy provides insight into the role of Nb 4d transition metal in inducing the magnetic anisotropy in amorphous/polycrystalline CoFeB thin films, which is vital for advancing their application in spintronics devices.
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页数:11
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