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Frequency conversion of microwave signal without direct bias current using nanoscale magnetic tunnel junctions

机译:使用纳米级磁性隧道结的无直接偏置电流的微波信号的频率转换

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Frequency conversion forms an integral block of the electronic circuits used in various applications including energy harvesting, communications and signal processing. These frequency conversion units however require external power sources and occupy a large device footprint making it difficult to be integrated in micro-circuits. Here we demonstrate that nanoscale magnetic tunnel junctions can act as frequency converters without an external power supply or DC bias source. The device directly mixes an external microwave signal with the internal spin precession oscillations to create new frequencies tunable by an external magnetic field in a single device with a small device footprint. We observe up-conversion and down-conversion of the input signal for excitation frequencies between 2?GHz and 6?GHz. We also show that the device acts as a zero-bias rectifier that can generate voltages exceeding 12?mV when the excitation frequency matches the natural oscillations mode of the device.
机译:频率转换是电子电路不可或缺的组成部分,可用于各种应用,包括能量收集,通信和信号处理。但是,这些频率转换单元需要外部电源,并且占用较大的设备空间,因此很难集成到微电路中。在这里,我们证明了纳米级磁性隧道结可以充当变频器,而无需外部电源或直流偏置源。该设备将外部微波信号与内部自旋进动振荡直接混合在一起,以在单个设备中以较小的设备占地面积创建可通过外部磁场调谐的新频率。对于2?GHz和6?GHz之间的激励频率,我们观察到输入信号的上转换和下转换。我们还表明,该器件充当零偏整流器,当激励频率与器件的自然振荡模式匹配时,其可以产生超过12?mV的电压。

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