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Single-pulse terahertz coherent control of spin resonance in the canted antiferromagnet YFeO3, mediated by dielectric anisotropy

机译:介电各向异性介导的倾斜反铁磁体YFeO3的单脉冲太赫兹相干控制自旋共振

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摘要

We report on the coherent control of terahertz (THz) spin waves in a canted antiferromagnet yttrium orthoferrite, YFeO3, associated with a quasiferromagnetic (quasi-FM) spin resonance at a frequency of 0.3 THz, using a single-incident THz pulse. The spin resonance is excited impulsively by the magnetic field component of the THz pulse. The intrinsic dielectric anisotropy of YFeO3 in the THz range allows for coherent control of both the amplitude and the phase of the excited spin wave. The coherent control is based on simultaneous generation of two interfering phase-shifted spin waves whose amplitudes and relative phase, dictated by the dielectric anisotropy of the YFeO3 crystal, can be controlled by varying the polarization of the incident THz pulse with respect to the crystal axes. The spatially anisotropic decay of the THz-excited FM spin resonance in YFeO3, leading to an increasingly linear polarization of the THz oscillation at the spin resonance frequency, suggests a key role of magnon-phonon coupling in spin-wave energy dissipation. 2013 American Physical Society.
机译:我们报告了使用单入射太赫兹脉冲在倾斜的反铁磁体钇正铁酸盐YFeO3中与太磁(准FM)自旋共振相关联的太赫兹(THz)自旋波的相干控制,其频率为0.3 THz。太赫兹脉冲的磁场分量会脉冲激发自旋共振。在THz范围内,YFeO3的本征介电各向异性可以对激发自旋波的振幅和相位进行相干控制。相干控制基于两个干扰相移自旋波的同时生成,其振幅和相对相位(由YFeO3晶体的介电​​各向异性决定)可以通过改变入射THz脉冲相对于晶轴的极化来控制。 YFeO3中太赫兹激发的FM自旋共振的空间各向异性衰减,导致在自旋共振频率下太赫兹振荡的线性极化越来越大,表明磁振子-声子耦合在自旋波能量耗散中起关键作用。 2013美国物理学会。

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