The 83rd JSAP Autumn Meeting 2022

Presentation information

Oral presentation

10 Spintronics and Magnetics » 10.4 Spintronics in semiconductor, topological material, superconductor, and multiferroics

[23p-B201-1~12] 10.4 Spintronics in semiconductor, topological material, superconductor, and multiferroics

Fri. Sep 23, 2022 1:45 PM - 4:45 PM B201 (B201)

Shun Kanai(Tohoku Univ.), Shutaro Karube(東北大)

4:30 PM - 4:45 PM

[23p-B201-11] Emergence of multiple electron spin waves by in-plane magnetic field in GaAs/AlGaAs two-dimensional electron gas

Keito Kikuchi1, Junpei Sonehara1, Jun Ishihara2, Shutaro Karube1, Chaoliang Zhang3, Yuzo Ohno4, Hideo Ohno5,6,7, Junsaku Nitta1,6, Makoto Kohda1,6,8,9 (1.Grad. Sch. of Eng., Tohoku Univ., 2.Dep. of Appl. Phys., Tokyo Univ. of Sci., 3.FRIS, Tohoku Univ., 4.Univ. of Tsukuba, 5.RIEC, Tohoku Univ., 6.CSIS, Tohoku Univ., 7.CIES, Tohoku Univ., 8.FRiD, Tohoku Univ., 9.QUARC, QST)

Keywords:Spin-orbit interaction, Persistent spin helix, Electron spin waves

Spin-orbit interactions make the electron spins in semiconductors form a spatial spin structure as electron spin waves. In the persistent spin helix (PSH) state, in which spin relaxation is suppressed, two types of electron spin waves exist as eigenstates, helical and homogeneous spin modes. By taking advantage of multiplexity and parallelism in the wave nature, these spin modes are attractive for new information carriers. To realize novel functionalities based on electron spin waves, the generation of multiple electron spin waves is an important step in semiconductors. Here, we demonstrated the generation of both helical and homogeneous spin modes in a (001)GaAs/AlGaAs two-dimensional electron gas by applying an in-plane magnetic field near the PSH region. We will further discuss the stability of both spin modes depending on the in-plane field angles. This study paves a way to further control the electron spin wave by external means such as magnetic fields and gate electric fields.