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Terahertz spin-wave waveguides and optical magnonics in one-dimensional NiO nanorods

机译:太赫兹自旋波波导和光学magnonics NiO一维纳米棒

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The two-magnon (2M) spin waves with a magnon frequency of 43 THz, generated by a polarized laser, were first observed in one-dimensional (1D) NiO nanorods. The 1D NiO nanorods of similar to 700 nm length, which have perfectly in-plane antiferromagnetic spins lying on the (200) and (100) faces, are the smallest spin-wave waveguides. Due to the magneto-optical Faraday effect (MOFE), the significant change in the Faraday intensity can show the 2M information in the NiO nanorods. There are only two 2M-on and 2M-off states at various applied alternating-current magnetic fields and laser-incident angles, which make the 1D NiO nanorods excellent optical nanomagnonics.
机译:two-magnon(2米)自旋磁振子的波43太赫兹的频率,产生极化在一维激光,首次观察到(1 d)氧化镍纳米棒。700海里长度,完美的平面反铁磁性的躺在(200)和旋转(100)的脸,是最小的自旋波波导。效果(MOFE),重大的变化法拉第强度可以显示2 m的信息NiO纳米棒。2米状态在不同的应用交流磁场和laser-incident角度,使1 d NiO纳米棒的光学nanomagnonics。

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