Composite Magnetoelectrics: Materials, Structures, and by G Srinivasan, S Priya, N Sun

By G Srinivasan, S Priya, N Sun

Composite Magnetoelectrics: fabrics, constructions, and Applications offers the reader a precis of the speculation in the back of magnetoelectric phenomena, later introducing magnetoelectric fabrics and constructions and the options used to manufacture and represent them. half of the ebook seems to be at magnetoelectric units. purposes contain magnetic and present sensors, transducers for strength harvesting, microwave and millimeter wave units, miniature antennas and clinical imaging. the ultimate bankruptcy discusses growth in the direction of magnetoelectric memory.

  • Summarises sincerely the speculation in the back of magnetoelectric phenomena
  • Strong assurance of fabrication and characterisation techniques
  • Reviews a vast diversity of present and capability magnetoelectric devices

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Extra resources for Composite Magnetoelectrics: Materials, Structures, and Applications

Example text

The measurements could be done with (1) cavity, (2) stripline, or (3) shorted waveguides. Measurements with cavities are done using a modified electron spin resonance spectrometer. A TE102 reflection-type cavity with holes (1 mm diameter) at the center of the cavity bottom or at one-quarter wavelength from the bottom on the narrow side was used in the work reported in Shastry, Srinivasan, Bichurin, Petrov, and Tatarenko (2004). The holes facilitated measurements by placing the sample outside the cavity so that the electric field can be applied to the piezoelectric layer.

Bichurin, M. , & Srinivasan, G. (2008). Journal of Applied Physics, 103, 031101. , Bichurin, M. , Petrov, V. , & Tatarenko, A. S. (2004). Physics Review B, 70, 064416. , & Srinivasan, G. (2014). Applied Physics Letters, 104, 052901. , Rasmussen, E. , & Laletin, V. M. (2001). Physics Review B, 64, 214408. , Zavislyak, I. , & Tatarenko, A. S. (2006). Applied Physics Letters, 89, 152508. Sun, N. , & Srinivasan, G. (2012). SPIN, 2, 1240004. , & Li, J. (2011). Nanoscale, 3, 3152. Layered multiferroic composites G.

2009). Flexural deformation and bending mode of magnetoelectric nanobilayer. Journal of the Applied Physics, 106, 113901. Petrov, V. , & Srinivasan, G. (2008). Enhancement of magnetoelectric coupling in functionally graded ferroelectric and ferromagnetic bilayers. Physical Review B, 78, 184421. Petrov, V. , Bichurin, M. , & Galkina, T. A. (2009). Theory of magnetoelectric effect for bending modes in magnetostrictive-piezoelectric bilayers. Journal of the Applied Physics, 105, 063911. , Ryabkov, O.

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