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Antiferromagnetic Tunnel Junction as a Detector of Terahertz Frequency Signals

机译:作为太赫兹频率信号的检测器的反铁磁隧道结

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Although terahertz-frequency (TF) electromagnetic radiation has a great potential in medical, security, industry and science applications, nowadays there are great challenges in the generation, detection and processing of quasi-monochromatic TF electromagnetic signals. In this paper we present a novel type of dc biased TF signal detector (TFD) based on an antiferromagnetic tunnel junction (ATJ) that consists of two outer platinum layers and the inner antiferromagnet / MgO bilayer. In such a detector an output dc voltage is generated across the ATJ, when quasi-monochromatic TF signal with frequency equal to the frequency of dc current-driven magnetization oscillations in the antiferromagnetic layer is applied. Using a simple electric scheme of the TFD we show that although detector’s output voltage reduces with an increase of frequency, it can reach 0.4 mV for input power of 1 μW in the frequency range 0.1 – 1 THz if the ATJ with thin MgO tunneling barrier (~ 1 nm) and small lateral size (~ 100 nm) is used.
机译:虽然太赫兹频率(TF)电磁辐射在医疗,安全性,工业和科学应用中具有巨大潜力,但是在准单色TF电磁信号的产生,检测和加工中存在巨大挑战。本文介绍了一种基于反铁磁隧道结(ATJ)的新型DC偏置TF信号检测器(TFD),其由两个外铂层和内部反霉菌/ MgO双层组成。在这种检测器中,当施加具有等于反铁磁层中的DC电流驱动磁化振荡频率的频率的准单色TF信号时,在ATJ上产生输出DC电压。使用TFD的简单电气方案,我们表明,虽然检测器的输出电压随着频率的增加而减小,但如果频率范围为0.1 - 1至第三,则可以达到0.4mV的输入功率为0.1-1至1 ZHz,如果具有薄MgO隧道隧道屏障(使用〜1nm)和小横向尺寸(〜100nm)。

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