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Designing current–strain-assisted superconductor–ferromagnet multi-bit memories
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作者 hasnain mehdi jafri 王静 +2 位作者 施小明 梁德山 黄厚兵 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第11期619-625,共7页
Current superconducting memory devices lack the basic quality of high memory density for practical memories,mainly due to the size limitations of superconducting quantum interference devices.Here,we propose a supercon... Current superconducting memory devices lack the basic quality of high memory density for practical memories,mainly due to the size limitations of superconducting quantum interference devices.Here,we propose a superconductor–ferromagnet bilayer device with strain-pulse-assisted multi-bit ladder-type memory,by using strain-engineered ferromagnet domain structure to control carrier concentration in the superconductor,which is simulated by coupled Landau–Lifshitz–Gilbert and Ginzburg–Landau equations.Current-and strain-pulses are observed to deterministically control the resistivity of superconductor for one and two-bit device arrangements.The average carrier concentration of superconductor is observed to have multiple metastable states that can be controllably switched using current-pulse and strain-pulse to determine multiple resistivity states.These findings confirm the eligibility of superconductor–ferromagnet bilayers to be used as ladder-type multibit memories and open a new way for further theoretical and experimental investigations of the cryogenic memories. 展开更多
关键词 superconductor-ferromagnet bilayer cryogenic memories superconducting memories vortex memories
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Phase-field simulation of superconductor vortex clustering in the vicinity of ferromagnetic domain bifurcations
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作者 hasnain mehdi jafri 王静 +2 位作者 杨超 王俊升 黄厚兵 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第12期99-102,共4页
Superconductors and ferromagnets are highly non-compatible materials due to the natures of their respective electronic states.But when artificially brought together,they develop interesting characteristics,one of whic... Superconductors and ferromagnets are highly non-compatible materials due to the natures of their respective electronic states.But when artificially brought together,they develop interesting characteristics,one of which,vortex clustering,is discussed here in this paper.Phase-field and micromagnetic simulations are performed to investigate the superconductor and ferromagnet bilayer,respectively.The ferromagnet with uniaxial anisotropy is observed to develop the maze domain,whereas the superconductor subjected to the influence of the ferromagnetic stray field displays a vortex pattern.Clustered vortices in superconductors at certain locations are observed to be precisely located over magnetic domain bifurcations.The enhanced out-of-plane stray field at bifurcations around the curved domain walls and the convergent Lorentz force due to screening currents in superconductor are attributed to the formation of clusters at bifurcation sites.Segregation of the inter-vortex spacing between straight and bifurcated domain is clearly observed.More importantly,inter-vortex spacing is predicted to serve as a precise tool to map local ferromagnet domain shapes. 展开更多
关键词 superconductor–ferromagnet bilayer vortex pinning vortex clustering bifurcated domains
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Enhanced Thermoelectric Transport Properties of La0.98Sr0.02CoO3-BiCuSeO Composite 被引量:1
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作者 Muhammad Umer Farooq Ziyuan Gao +7 位作者 Sajid Butt Kewei Gao Xiaolu Pang Hidayat Ullah Shah hasnain mehdi jafri Asif Mahmod Xigui Sun Nasir Mahmood 《Journal of Electrical Engineering》 2016年第2期52-57,共6页
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