丁贝

2024-03-26 17:48:00   来源:    点击:

丁贝 image.png

博士,特聘副研究员,青年英才(博士后)引进人才

E-mail:  dbei@m.scnu.edu.cn

通讯地址: 广州市番禺区大学城华南师范大学理5510006

主要研究方向:拓扑自旋磁结构及其新颖物性的研究

 

简介

20149月至20209,就读于中国科学院物理研究所磁学国家重点实验室(师从吴光恒研究员、王文洪研究员),202012月至202312同年在王文洪研究员、刘永昌特聘研究员课题组做博士后。201810月至20193月期间,在沙特阿卜杜拉国王科技大学张西祥教授研究组做交流生20241月加入华南师范大学。近年来,在新型斯格明子的材料探索、多场调控以及空间自旋构型研究等方面取得了一系列重要的研究成果,迄今,以第一作者/共同一作在Nat. Commun.Adv. Mater.Adv. Funct. Mater.Nano Lett.ACS NanoNPG Asia Mater.等国际著名期刊上发表SCI论文11篇(包括一篇ESI高被引论文)。

 

已发表文章:

[1] Y, Yao, B, Ding, and W. Wang et al., Chirality flips of skyrmion bubbles. Nat. Commun. 13, (2022). (共同一作)

[2] B. Ding, Y. Yao, and W. Wang et al., Observation of Short-Period Helical Spin Order and Magnetic Transition in a Nonchiral Centrosymmetric Helimagnet, Adv. Funct. Mater. 2200356, (2022).

[3] Z. Hou, W. Ren, B. Ding, and W. Wang et al., Observation of Various and Spontaneous Magnetic Skyrmionic Bubbles at Room Temperature in a Frustrated Kagome Magnet with Uniaxial Magnetic Anisotropy, Adv. Mater., 29, (2017). (共同一作)

[4] B. Ding, Z. Li, G. Xu, and W. Wang et al., Observation of Magnetic Skyrmion Bubbles in a van der Waals Ferromagnet Fe3GeTe2, Nano Lett. 20(2),868-873 (2020) (高被引论文). 

[5] J. Liu, B. Ding,and W. Wang et al. Magnetic skyrmionic bubbles at room temperature and sign-reversal of the topological Hall effect in a layered ferromagnet Cr0.87Te, ACS nano. 16 (9), (2022). (共同一作)

[6] B. Ding, X. Li, and W. Wang et al., Tunning the density of zero-field skyrmions and imaging the spin configuration in a two-dimensional magnet Fe3GeTe2, NPG Asia Mater. 14, (2022). 

[7] B. Ding, J. Zhang, X. Zhang, and W. Wang et al., Thermally induced generation and annihilation of magnetic chiral skyrmion bubbles and achiral bubbles in Mn-Ni-Ga Magnets, Appl. Phys. Lett, 116, 132402 (2020) (封面论文).

[8] Y. Yao, B. Ding, and W. Wang et al., Magnetic hard nanobubble: a possible magnetization structure behind the bi-skyrmion, Appl. Phys. Lett. 114, (10) (2019). (共同一作)

[9] B. Ding, Y. Li, G. Xu, and W. Wang et al., Large topological Hall effect in nonchiral hexagonal MnNiGa films, Appl. Phys. Lett., 110, 092404 (2017).

[10] B. Ding, J. Cui, G. Xu, and W. Wang et al., Manipulating Spin Chirality of Magnetic Skyrmion Bubbles by In-Plane Re-versed Magnetic Fields in (Mn1-xNix)65Ga35 (x = 0.45) magnet, P. R. Applied, 12 (5) (2019).

[11] B. Ding, H. Li, X. Li, and W. Wang et al., Crystal-orientation dependence of magnetic domain structures in the skyrmion-hosting magnets MnNiGa, APL Materials, 6, 076101 (2018). 


 

(更新时间:2024年3月26日)