The 69th JSAP Spring Meeting 2022

Presentation information

Oral presentation

10 Spintronics and Magnetics » 10.1 Emerging materials in spintronics and magnetics (including fabrication and characterization methodologies)

[22p-E205-1~16] 10.1 Emerging materials in spintronics and magnetics (including fabrication and characterization methodologies)

Tue. Mar 22, 2022 1:45 PM - 6:15 PM E205 (E205)

Shinobu Ohya(Univ. of Tokyo), Munetoshi Seki(Univ. of Tokyo), Jobu Matsuno(Osaka Univ.)

3:30 PM - 3:45 PM

[22p-E205-7] Annealing temperature dependence of thermo-spin and magneto-thermoelectric conversion in Co2MnGa films on Y3Fe5O12 and Gd3Ga5O12

〇Hayato Mizuno1, Rajkumar Modak1, Takamasa Hirai1, Atsushi Takahagi2, Yuya Sakuraba1, Ryo Iguchi1, Ken-ichi Uchida1,3,4 (1.NIMS, 2.Nagoya Univ., 3.IMR Tohoku Univ., 4.CSRN Tohoku Univ.)

Keywords:Heusler alloy, Spin Peltier effect, Anomalous Ettingshausen effect

Magnetic Heusler alloys have been widely studied as promising spintronic and spin-caloritronic materials because they may show half metallic or topological properties. For instance, Co2MnGa (CMG), a ferromagnetic full Heusler alloy, with the L21 ordered phase is known to exhibit the large anomalous Hall and anomalous Nernst effects due to the topological band structure. Recent studies show that CMG films with the L21 and B2 ordered phases also exhibit the large charge-to-spin current conversion efficiency. This finding suggests that CMG is useful for inducing thermo-spin effects, such as the spin Seebeck and spin Peltier effects, by forming CMG films on magnetic insulators, e.g., Y3Fe5O12. To clarify the potential of CMG as a spin-caloritronic material, in this study, we have characterized the structural and magnetic properties of CMG films grown on Y3Fe5O12 and Gd3Ga5O12 substrates at different annealing temperatures. By means of the lock-in thermography technique, we have also investigated the thermo-spin and magneto-thermoelectric conversion properties in the CMG/Y3Fe5O12 and CMG/Gd3Ga5O12 hybrid systems.