Growth and complete characterizations of artificial ferroics structures based on FE and AFE materials : performances comparison in terms of CME coupling and permeability tunability / Croissance et caractérisations complètes de structures ferroics artificielles à base de matériaux ferroélectrique et anti ferroélectrique : comparaison des performances en termes de coefficient de couplage magnétoélectrique et de l'accordabilité de la perméabilité
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APA-like:
Tác giả chưa xác định. Growth and complete characterizations of artificial ferroics structures based on FE and AFE materials : performances comparison in terms of CME coupling and permeability tunability / Croissance et caractérisations complètes de structures ferroics artificielles à base de matériaux ferroélectrique et anti ferroélectrique : comparaison des performances en termes de coefficient de couplage magnétoélectrique et de l'accordabilité de la perméabilité. Thesis, HAL - Pháp.
Việt Nam (chuẩn TCVN 5453:1991):
. Growth and complete characterizations of artificial ferroics structures based on FE and AFE materials : performances comparison in terms of CME coupling and permeability tunability / Croissance et caractérisations complètes de structures ferroics artificielles à base de matériaux ferroélectrique et anti ferroélectrique : comparaison des performances en termes de coefficient de couplage magnétoélectrique et de l'accordabilité de la perméabilité. Thesis. HAL - Pháp. Truy cập từ .
Tóm tắt
The magnetoelectric (ME) coupling effect, a coexistence of electrical polarization and magnetization in multiferroic materials, has been widely investigated, both from a fundamental science perspective and an application point of view. Many researchers have devoted their efforts to realize electric field (E) control of magnetism, instead of a magnetic field (H), i.e., converse magnetoelectric (CME) coupling effect. The CME effect can be realized in ferromagnetic (FM)/ferroelectric (FE) composite...