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Measurement of the activation volume in magnetic random access memory

Title
Measurement of the activation volume in magnetic random access memory
Author
김종렬
Issue Date
2023-02
Publisher
American Institute of Physics Inc.
Citation
Journal of Applied Physics, v. 133, NO. 7, article no. 073901,
Abstract
Measuring thermal stability in magnetic random access memory devices is non-trivial. Recently, there has been much discussion on the appropriate model to use: single domain or domain wall nucleation. Of particular challenge is assessing the maximum size at which the single domain model can be assumed. Typically, this is estimated to be in the range of 20-30 nm based on a value of the exchange stiffness (A e x) that is assumed, estimated using indirect measurements or derived from significantly thicker films. In this work, it is proposed that this maximum size can be measured directly via the activation volume(V a c t) or the activation diameter(D a c t), which originates from the concept of magnetic viscosity. This is conducted by measuring, using the time dependence of magnetization at different applied fields, D a c t in perpendicular magnetic tunnel junction pillars of varying effective anisotropy constant (K e f f) and diameter. It is shown that the trend in D a c t follows 1 / K e f f dependence, in good agreement with the analytic model for the critical diameter of coherent switching. Critically, it is also found that the smallest size for which a single domain, with coherent reversal, occurs is 20 nm. Thus, in devices with technologically relevant values of K e f f, the macrospin model may only be used in 20 nm, or smaller, devices. © 2023 Author(s).
URI
https://pubs.aip.org/aip/jap/article/133/7/073901/2876682/Measurement-of-the-activation-volume-in-magnetichttps://repository.hanyang.ac.kr/handle/20.500.11754/182874
ISSN
0021-8979;1089-7550
DOI
10.1063/5.0135948
Appears in Collections:
COLLEGE OF ENGINEERING SCIENCES[E](공학대학) > MATERIALS SCIENCE AND CHEMICAL ENGINEERING(재료화학공학과) > Articles
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