Priyanka P, Makani N H, Banerjee R, Sarkar I
Institute of Nano Science and Technology, Sector 81, Sahibzada Ajit Singh Nagar, Punjab 140306, India.
Department of Physics, Indian Institute of Technology Gandhinagar, Palaj 382355, India.
Nanotechnology. 2022 Dec 23;34(10). doi: 10.1088/1361-6528/aca983.
Spin pumping is a key property for spintronic application that can be realized in heavy metal/ferromagnet bilayers. Here we demonstrate the possibility of improving spin pumping in permalloy (Py)/tantalum (Ta) bilayers through control of Ta heavy metal deposition temperature. Through a combination of structural and ferromagnetic resonance based magnetization dynamics study, we reveal the role of Ta deposition temperature in improving spin mixing conductance which is a key parameter for spin pumping across the Py/Ta interface. The results show that by depositing Ta above room temperature, a high spin mixing conductance of 7.7 ×10mis obtained with-Ta layer. The results present an understanding of the correlation between heavy metal deposition temperature and interface structure improvement and consequent control of spin pumping in Py/Ta bilayers.
自旋泵浦是自旋电子学应用中的一项关键特性,可在重金属/铁磁体双层结构中实现。在此,我们展示了通过控制钽(Ta)重金属沉积温度来提高坡莫合金(Py)/钽(Ta)双层结构中自旋泵浦的可能性。通过结合基于结构和铁磁共振的磁化动力学研究,我们揭示了Ta沉积温度在提高自旋混合电导方面的作用,自旋混合电导是Py/Ta界面自旋泵浦的关键参数。结果表明,通过在室温以上沉积Ta,Ta层可获得7.7×10的高自旋混合电导。这些结果有助于理解重金属沉积温度与界面结构改善之间的相关性,以及对Py/Ta双层结构中自旋泵浦的控制。