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Magnetoelectrical control of nonreciprocal microwave response in a multiferroic helimagnet

机译:磁电控制多铁螺旋磁铁中不可逆的微波响应

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摘要

The control of physical properties by external fields is essential in many contemporary technologies. For example, conductance can be controlled by a gate electric field in a field effect transistor, which is a main component of integrated circuits. Optical phenomena induced by an electric field such as electroluminescence and electrochromism are useful for display and other technologies. Control of microwave propagation is also important for future wireless communication technology. Microwave properties in solids are dominated mostly by magnetic excitations, which cannot be easily controlled by an electric field. One solution to this problem is to use magnetically induced ferroelectrics (multiferroics). Here we show that microwave nonreciprocity, that is, different refractive indices for microwaves propagating in opposite directions, could be reversed by an external electric field in a multiferroic helimagnet Ba2Mg2Fe12O22. This approach offers an avenue for the electrical control of microwave properties.
机译:在许多当代技术中,通过外部磁场控制物理特性至关重要。例如,可以通过作为集成电路的主要部件的场效应晶体管中的栅极电场来控制电导。由电场感应的光学现象(例如电致发光和电致变色)可用于显示器和其他技术。微波传播的控制对于未来的无线通信技术也很重要。固体中的微波特性主要由磁激发控制,而磁场难以控制。解决此问题的一种方法是使用磁感应铁电体(多铁性体)。在这里,我们显示了微波的不可逆性,即在相反方向传播的微波的不同折射率,可以通过多铁性直升机磁铁Ba2Mg2Fe12O22中的外部电场来反转。这种方法为微波控制电性能提供了途径。

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