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Liquid phase epitaxy magnetic garnet films and their applications 被引量:3
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作者 yi-heng rao Huai-Wu Zhang +4 位作者 Qing-Hui Yang Dai-Nan Zhang LI-Chuan Jln Bo Ma Yu-Juan Wu 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第8期62-71,共10页
Liquid phase epitaxy (LPE) is a mature technology. Early experiments on single magnetic crystal films fabricated by LPE were focused mainly on thick films for microwave and magneto-optical devices. The LPE is an exc... Liquid phase epitaxy (LPE) is a mature technology. Early experiments on single magnetic crystal films fabricated by LPE were focused mainly on thick films for microwave and magneto-optical devices. The LPE is an excellent way to make a thick film, low damping magnetic garnet film and high-quality magneto-optical material. Today, the principal challenge in the applied material is to create sub-micrometer devices by using modern photolithography technique. Until now the magnetic garnet films fabricated by LPE still show the best quality even on a nanoscale (about 100 nm), which was considered to be impossible for LPE method. 展开更多
关键词 liquid phase epitaxy (LPE) magnetic garnet MAGNETO-OPTICAL SPINTRONICS magnonics
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High uniformity and stability of 1S1R directly stacked for high-density cross-point memory applications 被引量:2
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作者 Zhi-Ying Yu Jia-Yi Zhao +4 位作者 Guo-Kun Ma Ao Chen Da-Lei Chen yi-heng rao Hao Wang 《Rare Metals》 SCIE EI CAS CSCD 2022年第11期3671-3676,共6页
In this letter,the Ti-doped NbO_(x)-based selector is applied to SiNOx-based resistive random-access memory(RRAM),forming Pt/NbOx(Ti-doped)/SiNO_(x)/Ti one selector-one RRAM device(1S1R),to suppress the sneak path cur... In this letter,the Ti-doped NbO_(x)-based selector is applied to SiNOx-based resistive random-access memory(RRAM),forming Pt/NbOx(Ti-doped)/SiNO_(x)/Ti one selector-one RRAM device(1S1R),to suppress the sneak path current.The fabricated 1S1R exhibits stable direct current(DC)endurance(>200 cycles),suitable memory window(>40),matched selectivity(>40)and high uniformity of switching parameters. 展开更多
关键词 Ti STABILITY HIGH
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