Bias-free very low frequency magnetoelectric antenna

Author:

Fu Shifeng1,Cheng Jiawei1,Jiang Tao1ORCID,Wu Hanzhou1,Fang Ze1,Jiao Jie2,Sokolov Oleg3ORCID,Ivanov Sergey3,Bichurin Mirza3ORCID,Wang Yaojin1ORCID

Affiliation:

1. School of Materials Science and Engineering, Nanjing University of Science and Technology 1 , Nanjing, Jiangsu 210094, China

2. Shanghai Institute of Ceramics, Chinese Academy of Sciences 2 , 215 Chengbei Road, Jiading, Shanghai 201800, China

3. Institute of Electronic and Informative Systems, Novgorod State University 3 , B. S.-Peterburgskaya St. 41, Veliky Novgorod 173003, Russia

Abstract

A rapid surge in the research on very low frequency (VLF) antennas is occurring due to the demand for radio navigation and special environment communications such as underwater and underground applications. Among them, magnetoelectric (ME) antennas have recently proven to be a prospective solution for miniaturization of VLF communication systems. However, the essential magnetic bias fields (Hdc) lead to challenges of miniaturization, electromagnetic interference, and noise sources for ME antenna application. Here, a bias-free VLF ME antenna based on the magneto-gradient ME composite (i.e., annealed Metglas/Metglas/PZT/Metglas/annealed Metglas) has been designed. Owing to the interaction effect between multi-unannealed/annealed Metglas, the magneto-gradient ME composite exhibits a large direct and converse ME response (αDME = 107 V/cm Oe and αCME = 9 Gs/V at resonance) at bias-free, which is about 63% and 33% of the maximum value under optimal magnetic bias for unannealed ME composites. Moreover, a digital amplitude shift keying (ASK) modulation method is proved suitable for the as-made bias-free VLF ME antenna. Such a bias-free ME antenna provides a practicable strategy for miniaturization of VLF communication.

Funder

National Natural Science Foundation of China

Russian Science Foundation

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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