The 63rd JSAP Spring Meeting, 2016

Presentation information

Oral presentation

10 Spintronics and Magnetics » 10.4 Semiconductors, organic, optical, and quantum spintronics

[19p-W241-2~12] 10.4 Semiconductors, organic, optical, and quantum spintronics

Sat. Mar 19, 2016 4:00 PM - 7:00 PM W241 (W2・W3)

Nobuki Tezuka(Tohoku Univ.)

6:15 PM - 6:30 PM

[19p-W241-10] Enhancement of spin transport length with tailored spin-orbit interactio

Yoji Kunihashi1, Haruki Sanada1, Hideki Gotoh1, Koji Onomitsu1, Makoto Kohda2, Junsaku Nitta2, Tetsuomi Sogawa1 (1.NTT BRL, 2.Tohoku Univ.)

Keywords:spin-orbit interaction,Kerr rotation

Recently, a lot of attention has focused on the suppression of spin relaxation in two-dimensional electron systems with balanced Rashba and k-linear Dresselhaus spin-orbit interactions (SOIs). The characteristic spin dynamics in such electron systems result in a long-lasting helical spin mode termed a persistent spin helix (PSH). However, spin coherence in the PSH state is inevitably destroyed by the k-cubic term of the Dresselhaus SOI in a realistic material. Here, we report that spin coherence is enhanced by an electrically controlled cubic Dresselhaus SOI. We found that spin coherence can be improved by balancing a Rashba SOI and all the terms of a Dresselhaus SOI. This technique will provide a new way of both suppressing spin relaxation and controlling spin precession frequency when using the cubic Dresselhaus SOI.