이경진 교수
Kyung‐Jin Lee
KAIST 반도체시스템공학과 · 물리·천문학
연구실 소개
이경진 교수의 연구실은 스핀트로닉스와 나노스케일 전자소자 분야에서 핵심적인 연구를 수행하고 있습니다. 주요 연구 방향은 스핀-오비탈 상호작용을 활용한 전자적 토크 제어, 고성능 스피너트론과 스피너트로닉스 기반 메모리 소자, 그리고 전기적 장치 제어를 통한 스핀 정보 제어 기술 개발입니다. 특히, 라쉬바 효과를 활용한 전압 제어 스핀소자 및 고속 스위칭 메모리의 물리적 메커니즘 규명에 초점을 맞추고 있습니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15The orbital Hall effect describes the generation of the orbital current flowing in a perpendicular direction to an external electric field, analogous to the spin Hall effect. As the orbital current carries the angular momentum as the spin current does, injection of the orbital current into a ferromagnet can result in torque on the magnetization, which provides a way to detect the orbital Hall effect. With this motivation, we examine the current-induced spin-orbit torques in various ferromagnet/h
We studied current-induced magnetic switching and excitations in structures comprising a free layer with in-plane magnetization traversed by a current with perpendicular-to-plane spin polarization. We derived analytical solutions from the Landau–Lifshitz–Gilbert equation including the spin-torque term, and compared them to numerical simulations within the single domain assumption. Taking into account the criterion of thermal stability, the magnetization switching in nanostructures of typical siz
Solid electrolyte memories utilizing voltage-induced resistance change display the capability of multilevel switching, but understanding of the microscopic switching mechanism has been left incomplete. Here, in situ TEM observation of voltage-induced changes in the microstructure of a solid electrolyte memory is reported, revealing that the multilevel switching originates from the growth of multiple conducting filaments with nanometer-sized diameter and spacing. Detailed facts of importance to s
Exploiting spin transport increases the functionality of electronic devices and enables such devices to overcome physical limitations related to speed and power. Utilizing the Rashba effect at the interface of heterostructures provides promising opportunities toward the development of high-performance devices because it enables electrical control of the spin information. Herein, the focus is mainly on progress related to the two most compelling devices that exploit the Rashba effect: spin transi
BACKGROUND: Two-dimensional (2D) speckle imaging has shown that it could evaluate not only regional but also global strain (epsilon) and strain rate (SR) of the left and right ventricles. There are no data for global epsilon/SR imaging for left atrial (LA) function evaluation. METHODS: A total of 54 subjects (37 men; mean age, 44 +/- 10 years) with normal treadmill exercise stress echocardiography and no coronary risk factors were enrolled. Global longitudinal LA epsilon/SR data obtained by 2D s
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