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Spin-polarized Current Switching of Co/Cu/Py Pac-man type II Spin-valve
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  • Spin-polarized Current Switching of Co/Cu/Py Pac-man type II Spin-valve
  • Spin-polarized Current Switching of Co/Cu/Py Pac-man type II Spin-valve
저자명
Lyle. Andrew,Hong. Yang-Ki,Choi. Byoung-Chul,Abo. Gavin,Bae. Seok,Jalli. Jeevan,Lee. Jae-Jin,Park. Mun-Hyoun,Syslo. Ryan
간행물명
Journal of magnetics
권/호정보
2010년|15권 3호|pp.103-107 (5 pages)
발행정보
한국자기학회
파일정보
정기간행물|ENG|
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기타
이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
서지반출

기타언어초록

We investigated spin-polarized current switching of Pac-man type II (PM-II) nanoelements in Pac-man shaped nanoscale spin-valves (Co/Cu/Py) using micromagnetic simulations. The effects of slot angle and antiferromagnetic (AFM) layer were simulated to obtain optimum switching in less than 2 ns. At a critical slot angle of $105^{circ}$, the lowest current density for anti-parallel to parallel (AP-P) switching was observed due to no vortex or antivortex formation during the magnetic reversal process. All other slot angles for AP-P formed a vortex or antivortex during the magnetization reversal process. Additionally, a vortex or anti-vortex formed for all slot angles for parallel to anti-parallel (P-AP) switching. The addition of an AFM layer caused the current density to decrease significantly for AP-P and P-AP at slot angles less than $90^{circ}$. However, at slot angles greater than $90^{circ}$, the current density tended to decrease by less amounts or actually increased slightly as shape anisotropy became more dominant. This allowed ultra-fast switching with 5.05 and $5.65{ imes}10^8;A/cm^2$ current densities for AP-P and P-AP, respectively, at a slot angle of $105^{circ}$.