High-density Néel-type magnetic skyrmion phase stabilized at high temperature

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Abstract

The discovery of a thermally stable, high-density magnetic skyrmion phase is a key prerequisite for realizing practical skyrmionic memory devices. In contrast to the typical low-density Néel-type skyrmions observed in technologically viable multilayer systems, with Lorentz transmission electron microscopy, we report the discovery of a high-density homochiral Néel-type skyrmion phase in magnetic multilayer structures that is stable at high temperatures up to 733 K (≈460 °C). Micromagnetic simulations reveal that a high-density skyrmion phase can be stabilized at high temperature by deliberately tuning the magnetic anisotropy, magnetic field, and temperature. The existence of the high-density skyrmion phase in a magnetic multilayer system raises the possibility of incorporating chiral Néel-type skyrmions in ultrahigh-density spin memory devices. Moreover, the existence of this phase at high temperature shows its thermal stability, demonstrating the potential for skyrmion devices operating in thermally challenging modern electronic chips.

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Kwon, H. Y., Song, K. M., Jeong, J., Lee, A. Y., Park, S. Y., Kim, J., … Choi, J. W. (2020). High-density Néel-type magnetic skyrmion phase stabilized at high temperature. NPG Asia Materials, 12(1). https://doi.org/10.1038/s41427-020-00270-z

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