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Antiferromagnetic THz-frequency Josephson-like Oscillator Driven by Spin Current

机译:由旋转电流驱动的反铁磁THz频率Josephson样振荡器

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The development of compact and tunable room temperature sources of coherent THz-frequency signals would open a way for numerous new applications. The existing approaches to THz-frequency generation based on superconductor Josephson junctions (JJ), free electron lasers, and quantum cascades require cryogenic temperatures or/and complex setups, preventing the miniaturization and wide use of these devices. We demonstrate theoretically that a bi-layer of a heavy metal (Pt) and a bi-axial antiferromagnetic (AFM) dielectric (NiO) can be a source of a coherent THz signal. A spin-current flowing from a DC-current-driven Pt layer and polarized along the hard AFM anisotropy axis excites a non-uniform in time precession of magnetizations sublattices in the AFM, due to the presence of a weak easy-plane AFM anisotropy. The frequency of the AFM oscillations varies in the range of 0.1–2.0?THz with the driving current in the Pt layer from 108?A/cm2 to 109?A/cm2. The THz-frequency signal from the AFM with the amplitude exceeding 1?V/cm is picked up by the inverse spin-Hall effect in Pt. The operation of a room-temperature AFM THz-frequency oscillator is similar to that of a cryogenic JJ oscillator, with the energy of the easy-plane magnetic anisotropy playing the role of the Josephson energy.
机译:Compace和可调室温的开发相干的THz频率信号的源将为许多新应用开辟道路。基于超导体Josephson结(JJ),自由电子激光器和量子级联的现有THz频率发电方法需要低温温度或/和复杂的设置,防止这些装置的小型化和广泛使用。从理论上,我们在理论上证明了重金属(Pt)和双轴反铁磁(AFM)电介质(NIO)的双层可以是相干THz信号的源极。由于存在弱容易平面AFM各向异性,从DC电流驱动的PT层流出的旋转电流并沿着硬AFM各向异性轴的偏振激发AFBM中的磁化磁化中的磁化的不均匀性。 AFM振荡的频率在0.1-2.0℃的范围内变化在0.1-2.0°THz的范围内,PT层中的驱动电流从108〜/ cm2至109?a / cm2。来自AFM的THz频率信号,振幅超过1Ω·v / cm被PT的逆旋转霍尔效应拾取。室温AFM THz频率振荡器的操作类似于低温JJ振荡器的操作,易于平面磁各向异性的能量扮演约瑟夫森能量的作用。

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