The 82nd JSAP Autumn Meeting 2021

Presentation information

Oral presentation

7 Beam Technology and Nanofabrication » 7.4 Buried interface sciences with quantum beam

[11a-N401-6~8] 7.4 Buried interface sciences with quantum beam

Sat. Sep 11, 2021 10:45 AM - 11:30 AM N401 (Oral)

Satoshi Toyoda(Tohoku Univ.)

11:00 AM - 11:15 AM

[11a-N401-7] Ultrafast demagnetization in NiCo2O4 thin films probed by time-resolved microscopy

Ryunosuke Takahashi1, Yoshiki Tani1, Hirotaka Abe1, Minato Yamasaki1, Ikumi Suzuki2, Daisuke Kan2, Yuichi Shimakawa2, Hiroki Wadati1 (1.Univ. of Hyogo, 2.Kyoto Univ.)

Keywords:Ultrafast, Time resolved, Perpendicular magnetic anisotropy

Using a time-resolved magneto-optical Kerr effect (TR-MOKE) microscope, we observed ultrafast demagnetization of inverse-spinel-type NiCo2O4 (NCO) epitaxial thin films of the inverse spinel type ferrimagnet NCO with perpendicular magnetic anisotropy. This microscope uses a pump-probe method, where the sample is pumped at 1030 nm, and magnetic domain images are acquired via MOKE microscopy at 515 nm (the second harmonic). We successfully observed the dynamics of the magnetic domain of the NCO thin film via laser irradiation, and obtained a demagnetization time constant of approximately 0.4 ps. This time constant was significantly smaller than the large time constants reported for other half-metallic oxides. These results, combined with the results of our x-ray photoemission spectroscopy study, indicate that this NCO thin film is a ferrimagnetic metal whose electronic structure deviates from the theoretically predicted half-metallic one.