首页> 外文会议>Progress in electromagnetics research symposium >Reversal of Microwave Propagation Nonreciprocity in Metastructures by Voltage Application under Ferromagnetic Resonance Excitation near Resonance of Dipole or Chiral Elements
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Reversal of Microwave Propagation Nonreciprocity in Metastructures by Voltage Application under Ferromagnetic Resonance Excitation near Resonance of Dipole or Chiral Elements

机译:通过电压应用在偶极子或手性元素附近的铁磁性共振激发下电压施加在偶极谐振激发下的微波传播非蓄能逆转

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Ferrite plate/varactor-loaded conductive resonance elements (chains or single element) metastructures are investigated experimentally in waveguide to achieving voltage controlled inversion of sign of the nonreciprocity S of microwave propagation. Dipoles of various shapes (butterfly, loop, snake, double split rings) with different type-varactors have been investigated. The metastructures show unique magnetically and electrically controlled nonreciprocal effects under coupled ferromagnetic resonance (FMR) in ferritc and resonance in dipoles (DR). Inversion of sign of δ occurs by the application of a bias voltage to a varactor when resonance frequency of DR passes through the FMR frequency as a result of which reversal of sense of rotating clliptically polarized h-field takes place. Usually inversion of nonreciprocal propagation of microwaves in ferrite is implemented by reversal of magnetization direction as a result of which reversal of sense of spins precession occurs.
机译:在实验中,在波导中实验研究了铁氧体板/变容振动器的导电共振元件(链或单个元素)代施加,以实现微波传播的非漏极性符号的电压控制反转。已经研究了各种形状(蝴蝶,环,蛇,双分圈)的偶极物,已经研究了不同类型的变容仪。该族结构在铁磁性共振(FMR)中显示出独特的磁性和电控非探测效应,其在铁磁性共振(FMR)中,并在偶极子(DR)中的共振。当由于DR的谐振频率通过FMR频率时,通过将偏置电压施加到变容仪的偏置电压作为旋转频率的谐振频率发生的旋转感应意义。通常通过反转的磁化方向来实现铁氧体中微波的非探测中的反转,因此由于发生了旋转意识的逆转感。

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