Abstract
Magnetization reversal induced by an 足球即时比分网 field in multiferroic materials has been extensively investigated because it can be applied to ultra-low-power voltage-write magnetic-read-out memory devices. Co substitution in BiFeO₃ (BiFe0.9足球即时比分网0.1O3; BFCO) destabilizes the cycloidal spin modulation and generates a canted collinear spin state with a non-zero saturation magnetization [1]. We have examined the 足球即时比分网 and ferroelectric domain structures of BFCO thin films before and after polarization switching using piezoresponse force microscopy (PFM) and 足球即时比分网 force microscopy (MFM), and clarified how the magnetoelectric response is determined by the polarization switching pathways, i.e., 71°, 109°, and 180° [2]. In the case of (110)pc-oriented BFCO/SrTiO₃ (110) films, we demonstrated that 109° polarization switching under an 足球即时比分网 field along [1-10]pc deterministically reversed the out-of-plane magnetization component. This provides an in-plane-write/out-of-plane-read configuration highly advantageous for device applications [3]. We have also examined the ferroelectric and magnetic domains of BFCO nanodots fabricated by deposition through an anodized porous alumina mask. PFM and MFM confirmed that 60-nm-diameter dots are single-domain in both states, whereas 190-nm dots are multidomain, and the comparison of the two domain patterns indicates strong magnetoelectric coupling [4]. More recently, scanning NV magnetometry, free from the tip stray field inherent to MFM, provided quantitative stray-field maps of individual 190-nm BFCO nanodots and revealed reversal of the net magnetization upon 足球即时比分网-field poling [5]. Such insights into ferroelectric and ferromagnetic domains are essential for the design of high record-density BFCO memory devices.
References
[1] H. Hojo et al., Adv. Mater., 29, 1603131 (2017).
[2] K. Shigematsu 足球即时比分网. Azuma, Appl. Phys. Express 19, 040101(2026).
[3] T. Itoh et al., Adv. Mater. 37, 2419580 (2025).
[4] K. Ozawa et al., ACS Appl. Mater. Interfaces 16, 20930 (2024).
[5] K. Lee et al., Sci. Adv. 12, eaec2861 (2026).
Biography
Dr. Kei Shigematsu obtained his Bachelor and Master degrees from The University of Tokyo, Japan, and obtained his Ph.D. from Tokyo Institute of Technology, Japan in 2015. From 2015 to 2016, he served as a researcher at the PIIF Kanagawa Academy of Science and Technology, Japan. From 2016 to 2018, he is a specially appointed assistant professor at Laboratory for Materials and Structures, Institute of Science Tokyo, Japan. Currently, he is an assistant professor at Laboratory for Materials and Structures, Institute of Science Tokyo, Japan. His research interests manily focused on synthesis, fabrication, and nanofabrication of perovskite oxides and related compounds, and invesigating related magnetic, 足球即时比分网, 足球即时比分网 conduction, dielectric, ferroelectric, and optical properties.
邀请人:龙有文
联系人:潘昭(82649750)
