2018 Volume 27 Issue 8
Article Contents

Yi-Heng Rao, Huai-Wu Zhang, Qing-Hui Yang, Dai-Nan Zhang, Li-Chuan Jin, Bo Ma, Yu-Juan Wu. 2018: Liquid phase epitaxy magnetic garnet films and their applications, Chinese Physics B, 27(8): 62-71. doi: 10.1088/1674-1056/27/8/086701
Citation: Yi-Heng Rao, Huai-Wu Zhang, Qing-Hui Yang, Dai-Nan Zhang, Li-Chuan Jin, Bo Ma, Yu-Juan Wu. 2018: Liquid phase epitaxy magnetic garnet films and their applications, Chinese Physics B, 27(8): 62-71. doi: 10.1088/1674-1056/27/8/086701

Liquid phase epitaxy magnetic garnet films and their applications

  • Available Online: 01/01/2018
  • Fund Project: the National Key Research and Development Program of China(Grant 2016YFA0300801)%the National Natural Science Foundation of China(Grant . 51702042, 61734002, 61571079, 51572042, and 61471096)%the International Science&Technology Cooperation Program of China(Grant 2015DFR50870)%the Sichuan Science and Technology Support Project, China(Grant . 2016GZ0250 and 2017JY0002)
  • 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.
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Liquid phase epitaxy magnetic garnet films and their applications

Abstract: 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.

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