首页> 外文期刊>Journal of Applied Physics >The magnetoelectric MEE-effect in the SmFe3(BO3)(4) multiferroic in dc and ac electric fields
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The magnetoelectric MEE-effect in the SmFe3(BO3)(4) multiferroic in dc and ac electric fields

机译:直流电场和交流电场中SmFe3(BO3)(4)多铁性中的磁电MEE效应

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摘要

The inverse magnetoelectric MEE-effect in the SmFe3(BO3)(4) single-crystal sample in an applied electric field has been studied. The electric field E consists of two components: a constant one, e(0), and a variable one, e x cos(omega t). The investigated compound evokes great interest due to the existence of both linear and quadratic contributions to the magnetoelectric effect. According to theoretical analysis, the effective susceptibility of the first harmonic of magnetic moment oscillations depends on the dc electric field component e(0). Indeed, according to the measurement data, the dc field e(0) significantly affects the MEE-effect first-harmonic amplitude: depending on the e(0) sign, these oscillations can be either amplified or suppressed. This offers an opportunity for controlling the magnetic moment oscillation amplitude at the applied electric field frequency, including the signal modulation, which is promising for application. In the applied dc field e(0), a slight change in the susceptibility of the MEE-effect term quadratic to the electric field was detected. The mathematical apparatus used correctly describes the qualitative dependence of the MEE-effect amplitude on the dc field e(0), while the quantity appears to be approximately twofold overestimated. Published by AIP Publishing.
机译:研究了SmFe3(BO3)(4)单晶样品在外加电场下的逆磁电MEE效应.电场 E 由两个分量组成:一个常数 e(0) 和一个可变分量 e x cos(omega t)。由于存在对磁电效应的线性和二次贡献,所研究的化合物引起了极大的兴趣。根据理论分析,磁矩振荡一次谐波的有效磁化率取决于直流电场分量e(0)。事实上,根据测量数据,直流场 e(0) 显着影响 MEE 效应的一级谐波幅度:根据 e(0) 符号,这些振荡可以被放大或抑制。这为控制施加电场频率下的磁矩振荡幅度提供了机会,包括信号调制,这在应用中很有前途。在外加直流场e(0)中,检测到MEE效应项二次对电场的敏感性略有变化。所使用的数学仪器正确地描述了MEE效应振幅对直流场e(0)的定性依赖性,而该量似乎被高估了大约两倍。由AIP Publishing出版。

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