Thermal spin-transfer torque driven by the spin-dependent Seebeck effect in metallic spin-valves

  • Choi, Gyung-Min
  • Moon, Chul-Hyun
  • Min, Byoung-Chul
  • Lee, Kyung-Jin
  • Cahill, David G.
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초록

The coupling of spin and heat gives rise to new physical phenomena in nanoscale spin devices. In particular, spin-transfer torque (STT) driven by thermal transport provides a new way to manipulate local magnetization. We quantify thermal STT in metallic spin-valve structures using an intense and ultrafast heat current created by picosecond pulses of laser light. Our result shows that thermal STT consists of demagnetization-driven and spin-dependent Seebeck effect (SDSE)-driven components; the SDSE-driven STT becomes dominant after 3 ps. The sign and magnitude of the SDSE-driven STT can be controlled by the composition of a ferromagnetic layer and the thickness of a heat sink layer.

키워드

MAGNETIC MULTILAYERMAGNETORESISTANCEEXCITATIONFERROMAGNETINJECTION
제목
Thermal spin-transfer torque driven by the spin-dependent Seebeck effect in metallic spin-valves
저자
Choi, Gyung-MinMoon, Chul-HyunMin, Byoung-ChulLee, Kyung-JinCahill, David G.
DOI
10.1038/NPHYS3355
발행일
2015-07
유형
Article
저널명
Nature Physics
11
7
페이지
576 ~ U87