Turutin, A.V.; Skryleva, E.A.; Kubasov, I.V.; Milovich, F.O.; Temirov, A.A.; Raketov, K.V.; Kislyuk, A.M.; Zhukov, R.N.; Senatulin, B.R.; Kuts, V.V.;
et al. Magnetoelectric MEMS Magnetic Field Sensor Based on a Laminated Heterostructure of Bidomain Lithium Niobate and Metglas. Materials 2023, 16, 484.
https://doi.org/10.3390/ma16020484
AMA Style
Turutin AV, Skryleva EA, Kubasov IV, Milovich FO, Temirov AA, Raketov KV, Kislyuk AM, Zhukov RN, Senatulin BR, Kuts VV,
et al. Magnetoelectric MEMS Magnetic Field Sensor Based on a Laminated Heterostructure of Bidomain Lithium Niobate and Metglas. Materials. 2023; 16(2):484.
https://doi.org/10.3390/ma16020484
Chicago/Turabian Style
Turutin, Andrei V., Elena A. Skryleva, Ilya V. Kubasov, Filipp O. Milovich, Alexander A. Temirov, Kirill V. Raketov, Aleksandr M. Kislyuk, Roman N. Zhukov, Boris R. Senatulin, Victor V. Kuts,
and et al. 2023. "Magnetoelectric MEMS Magnetic Field Sensor Based on a Laminated Heterostructure of Bidomain Lithium Niobate and Metglas" Materials 16, no. 2: 484.
https://doi.org/10.3390/ma16020484
APA Style
Turutin, A. V., Skryleva, E. A., Kubasov, I. V., Milovich, F. O., Temirov, A. A., Raketov, K. V., Kislyuk, A. M., Zhukov, R. N., Senatulin, B. R., Kuts, V. V., Malinkovich, M. D., Parkhomenko, Y. N., & Sobolev, N. A.
(2023). Magnetoelectric MEMS Magnetic Field Sensor Based on a Laminated Heterostructure of Bidomain Lithium Niobate and Metglas. Materials, 16(2), 484.
https://doi.org/10.3390/ma16020484