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Effect of the Injected Plasma on the Effective Radius of the Magnetic Bubble
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作者 李辉 陶小平 《Plasma Science and Technology》 SCIE EI CAS CSCD 2010年第1期99-102,共4页
Effect of the injected plasma on the effective radius of the magnetic bubble in plasma sail is discussed. Results from solving both the two-dimensional magneto-hydrodynamic(MHD) equations and the magnetic flux conse... Effect of the injected plasma on the effective radius of the magnetic bubble in plasma sail is discussed. Results from solving both the two-dimensional magneto-hydrodynamic(MHD) equations and the magnetic flux conservation equation indicate that the effective radius of the magnetic bubble formed by the pure dipole field is very small, and the rate of the falloff of the magnetic field can be effectively reduced by the inflation of the high-density plasma. The falloff rate of the magnetic field can be r^-1.4. The effective radius of the magnetic bubble can hence be 8.2 km. The effective radius of the magnetic bubble increases about thirty-six times, comparing to the case of the pure dipole field. 展开更多
关键词 effective radius magnetic bubble plasma sail high-density plasma
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Magnetic triangular bubble lattices in bismuth-doped yttrium iron garnet
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作者 蔺涛 王承祥 +7 位作者 邱志勇 陈超 邢弢 孙璐 梁建辉 吴义政 时钟 雷娜 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第2期34-39,共6页
Magnetic bubbles have again become a subject of significant attention following the experimental observation of topologically nontrivial magnetic skyrmions. In recent work, tailoring the shape of the bubbles is consid... Magnetic bubbles have again become a subject of significant attention following the experimental observation of topologically nontrivial magnetic skyrmions. In recent work, tailoring the shape of the bubbles is considered a key factor for their dynamics in spintronic devices. In addition to the reported circular, elliptical, and square bubbles, here we observe triangular bubble domains in bismuth-doped yttrium iron garnet(Bi-YIG) using Kerr microscopy. The bubble domains evolve from discrete circular to latticed triangular and hexagonal shapes. Further, the orientation of the triangular bubbles in the hexagonal lattices can be flipped by decreasing the magnetic field. The sixfold in-plane magnetic anisotropy of Bi-YIG(111) crystal, which is presumably the mechanism underlying the triangular shape of the bubbles, is measured as1179 erg/cm~3. The study of the morphologies of topologically trivial bubbles in YIG offers insight into nontrivial spin textures, which is appealing for future spintronic applications. 展开更多
关键词 magnetic bubble yttrium iron garnet Kerr microscopy SPINTRONICS
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Lorentz transmission electron microscopy studies on topological magnetic domains 被引量:1
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作者 Li-Cong Peng Ying Zhang +7 位作者 Shu-Lan Zuo Min He Jian-Wang Cai Shou-Guo Wang Hong-Xiang Wei Jian-Qi Li Tong-Yun Zhao Bao-Gen Shen 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第6期47-61,共15页
Lorentz transmission electron microscopy(TEM) is a powerful tool to study the crystal structures and magnetic domain structures in correlation with novel physical properties. Nanometric topological magnetic configur... Lorentz transmission electron microscopy(TEM) is a powerful tool to study the crystal structures and magnetic domain structures in correlation with novel physical properties. Nanometric topological magnetic configurations such as vortices, bubbles, and skyrmions have received enormous attention from the viewpoint of both fundamental science and potential applications in magnetic logic and memory devices, in which understanding the physical properties of magnetic nanodomains is essential. In this review article, several magnetic imaging methods in Lorentz TEM including the Fresnel and Foucault modes, electron holography, and differential phase contrast(DPC) techniques are discussed, where the novel properties of topological magnetic domains are well addressed. In addition, in situ Lorentz TEM demonstrates that the topological domains can be efficiently manipulated by electric currents, magnetic fields, and temperatures, exhibiting novel phenomena under external fields, which advances the development of topological nanodomain-based spintronics. 展开更多
关键词 in situ Lorentz TEM magnetic vortices magnetic bubbles magnetic skyrmions
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Persistent excitation of spin waves for kπ-state skyrmions 被引量:1
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作者 RongZhi Zhao ChengLong Hu +2 位作者 LianZe Ji WenChao Chen XueFeng Zhang 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2020年第6期89-96,共8页
In this study,we investigated the micromagnetic dynamics of kπ-state skyrmions in a magnetic nanodot under a circular spinpolarized current and found an excited spin wave that can propagate persistently along the dir... In this study,we investigated the micromagnetic dynamics of kπ-state skyrmions in a magnetic nanodot under a circular spinpolarized current and found an excited spin wave that can propagate persistently along the direction of the radius toward the center.This dynamic process is associated with two energetically favorable states in an oscillating period of spin waves.In this case,the spin-polarized current plays a role similar to effective perpendicular magnetic anisotropy and decreases the minimum energy in the magnetic system.Our findings provide insight into understanding the dynamic behaviors of topological magnetic textures. 展开更多
关键词 magnetic bubbles spin waves micromagnetic simulation
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