<p>We demonstrate sputtering power dependent magnetic compensation temperatures, perpendicular magnetic anisotropy, and magnetocaloric properties of ferrimagnetic Tb<sub>30</sub>(Fe<sub>7</sub>Co<sub>63</sub>) amorphous thin films. The magnetic compensation temperature rises from 224&#xa0;K to 407&#xa0;K when sputtering power increases from 50&#xa0;W to 100&#xa0;W. Magnetization, and Hall effect measurements confirm the presence of perpendicular magnetic anisotropy in these films. The out-of-plane magneto-optic kerr effect (MOKE) measurements reveal that the films deposited with 50&#xa0;W, 70&#xa0;W, and 80&#xa0;W exhibit good perpendicular magnetic anisotropy with a squareness ratio of around 1. The effective anisotropy constant (K<sub>u</sub>) increases with increase with sputtering power and reaches a maximum value of 1.29 × 10<sup>6</sup> erg/cm<sup>3</sup> at 100&#xa0;W. Magnetocaloric investigations across a wide temperature range using a ± 15kOe magnetic field show a substantial increment in magnetic entropy change. The magnetic entropy change is noticed around 0.25&#xa0;J/kgK for films deposited with 100&#xa0;W. These findings emphasize the significance of sputtering power in controlling the magnetic properties of amorphous ferrimagnetic thin films for spintronic and magnetocaloric applications.</p>

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Magnetocaloric properties of ferrimagnetic TbFeCo thin films near compensation temperature with perpendicular anisotropy: effect of sputtering power

  • Zengli Guo,
  • G. Jagadish Kumar,
  • Zhiwen Wang,
  • K. Kamala Bharathi,
  • Ke Wang

摘要

We demonstrate sputtering power dependent magnetic compensation temperatures, perpendicular magnetic anisotropy, and magnetocaloric properties of ferrimagnetic Tb30(Fe7Co63) amorphous thin films. The magnetic compensation temperature rises from 224 K to 407 K when sputtering power increases from 50 W to 100 W. Magnetization, and Hall effect measurements confirm the presence of perpendicular magnetic anisotropy in these films. The out-of-plane magneto-optic kerr effect (MOKE) measurements reveal that the films deposited with 50 W, 70 W, and 80 W exhibit good perpendicular magnetic anisotropy with a squareness ratio of around 1. The effective anisotropy constant (Ku) increases with increase with sputtering power and reaches a maximum value of 1.29 × 106 erg/cm3 at 100 W. Magnetocaloric investigations across a wide temperature range using a ± 15kOe magnetic field show a substantial increment in magnetic entropy change. The magnetic entropy change is noticed around 0.25 J/kgK for films deposited with 100 W. These findings emphasize the significance of sputtering power in controlling the magnetic properties of amorphous ferrimagnetic thin films for spintronic and magnetocaloric applications.