3. 강의목표
This lecture aims to cover developments in in the field of spintronics, spin-orbitronics, and orbitronics. The covered topics include GMR (Giant Magnetoresistance), spin drift-diffusion equation, STT (spin-transfer torque), Landau-Lifshitz-Gilbert equation, magnetization dynamics induced by a magnetic field and STT, spin pumping, spin mixing conductance, spin motive force, tunneling magneto resistance, STT in magnetic tunnel junctions, complex band structure for MgO-based magnetic tunnel junctions, Rashba spin-momentum coupling, Edelstein effect, inverse Edelstein effect, field-like torque and damping-like torque, spin Hall effect, Dzyaloshinskii-Moriya interaction, spin Hall magnetoresistance, interband process (or Berry phase) for anomalous Hall effect and spin Hall effect, orbital Rashba-momentum coupling, orbital Hall effect, orbital pumping, orbital angular position, orbital torque, and orbital relaxation.
4. 강의선수/수강필수사항
PHYS401 Solid State Physics, PHYS 301 & 302 Quantum Physics I & II, PHYS505 Quantum Mechanics I
5. 성적평가
Problem Set (70%) & Presentation (30%)
7. 참고문헌 및 자료
Mostly original papers
8. 강의진도계획
Week 1~5: Topics in spintronics
Week 6~10: Topics in spin-orbitronics
Week 11~14: Topics in orbitronics
Week 15~16: Presentations
11. 장애학생에 대한 학습지원 사항
- 수강 관련: 문자 통역(청각), 교과목 보조(발달), 노트필기(전 유형) 등
- 시험 관련: 시험시간 연장(필요시 전 유형), 시험지 확대 복사(시각) 등
- 기타 추가 요청사항 발생 시 장애학생지원센터(279-2434)로 요청